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                            <title><![CDATA[ Latest from Live Science in Quantum ]]></title>
                <link>https://www.livescience.com/technology/computing/quantum</link>
        <description><![CDATA[ All the latest quantum content from the Live Science team ]]></description>
                                    <lastBuildDate>Mon, 11 May 2026 15:00:00 +0000</lastBuildDate>
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                                                            <title><![CDATA[ New 'trick' fixes major flaw with lasers in neutral-atom quantum computers — inching us closer to more powerful systems ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/new-trick-fixes-major-flaw-in-neutral-atom-quantum-computers-inching-us-closer-to-a-superpowerful-system</link>
                                                                            <description>
                            <![CDATA[ A new "geometry‑based" quantum swap gate makes neutral‑atom computers far less sensitive to laser noise — bringing large‑scale, stable quantum processors a step closer to reality. ]]>
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                                                                        <pubDate>Mon, 11 May 2026 15:00:00 +0000</pubDate>                                                                                                                                <updated>Wed, 13 May 2026 09:19:08 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/oC6W3E3PGRunJHZqo3quxP-1280-80.jpg">
                                                            <media:credit><![CDATA[Mika Blackmore-Esslinger / ETH Zurich]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[In a swap gate, neighboring qubit states (blue and beige) are exchanged. The qubits are made of cold atoms trapped inside an artificial crystal created by laser light.]]></media:description>                                                            <media:text><![CDATA[An illustration showing various blue and white dots connected by glowing lines weaving through waves of black. ]]></media:text>
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                                                            <title><![CDATA[ Live 'quantum network' being tested in New York — overcoming key hurdles could bring us closer to an 'unhackable' internet ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/live-quantum-network-test-in-new-york-overcomes-2-key-hurdles-in-creating-an-unhackable-internet</link>
                                                                            <description>
                            <![CDATA[ Scientists tested a live quantum internet between three locations across New York, inching closer to an unhackable internet. ]]>
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                                                                        <pubDate>Fri, 08 May 2026 10:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 08 May 2026 17:24:39 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/Uinsg6AbTizJVFPWS3HrKF-1280-80.jpg">
                                                            <media:credit><![CDATA[Busakorn Pongparnit via Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[A recent test in New York suggests that the quantum internet may be here sooner than expected. ]]></media:description>                                                            <media:text><![CDATA[A cityscape with a blue filter over it has a series of lines and dots overlaid on top.]]></media:text>
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                                                            <title><![CDATA[ Quantum battery charges in a quadrillionth of a second with a laser — larger prototypes could last for years after charging for just a minute ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/engineering/quantum-battery-charges-in-a-quadrillionth-of-a-second-with-a-laser-larger-prototypes-could-last-for-years-after-charging-for-just-a-minute</link>
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                            <![CDATA[ Quantum batteries can be charged remotely and could allow for far better energy density than conventional batteries used in devices today. ]]>
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                                                                        <pubDate>Wed, 06 May 2026 14:00:00 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Engineering]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                                                                                    <dc:creator><![CDATA[ Rory Bathgate ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/eY4bomvnGbxK7LrAUWrX5L-1280-80.jpg">
                                                            <media:credit><![CDATA[University of Melbourne]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[A view inside the quantum battery lab at CSIRO, Australia&#039;s national science agency.]]></media:description>                                                            <media:text><![CDATA[A person wearing a blue clean suit and mask bends over a large metal array of tubing. ]]></media:text>
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                                                            <title><![CDATA[ Breakthrough in experimental light-powered quantum computers could mean scaling them up is now far more viable ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/breakthrough-in-experimental-light-powered-quantum-computers-could-mean-scaling-them-up-is-now-far-more-viable</link>
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                            <![CDATA[ Scientists have achieved a breakthrough by "distilling" light to eliminate the noise that prevents photonic quantum computers from scaling. ]]>
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                                                                        <pubDate>Wed, 29 Apr 2026 10:44:57 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/noR5fWMVUxXawQEHbxN29Z-1280-80.jpg">
                                                            <media:credit><![CDATA[QuiX Quantum]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[An illustration from QuiX of photons on a &quot;conveyor belt.&quot;]]></media:description>                                                            <media:text><![CDATA[An illustration of a conveyor belt with various red dots on it red out as numbers in green.]]></media:text>
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                                                            <title><![CDATA[ Scientists create new type of encryption that protects video files against quantum computing attacks ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/scientists-create-new-type-of-encryption-that-protects-video-files-against-quantum-computing-attacks</link>
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                            <![CDATA[ A newly developed encryption framework aims to protect video data from future quantum attacks, all while running on today's conventional hardware. ]]>
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                                                                        <pubDate>Thu, 09 Apr 2026 11:00:00 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Carly Page ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/kAwgFLvwrjoS8MV54s4c9a-1280-80.jpg">
                                                            <media:credit><![CDATA[nuchao via Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Experts have said that quantum computing may pose a serious threat to modern encryption methods. ]]></media:description>                                                            <media:text><![CDATA[An illustration of a blue glowing chandelier of horizontal rings connected by vertical wires. Larger glowing wires connect this chandelier to shelves of glowing servers around the dark room]]></media:text>
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                                                            <title><![CDATA[ IBM quantum processor achieves highest fidelity calculations for the longest period of time on record ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/ibm-quantum-processor-achieves-highest-fidelity-calculations-for-the-longest-period-of-time-on-record</link>
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                            <![CDATA[ Scientists have developed a novel approach to error correction that resulted in the highest-ever fidelity of entangled, logical qubits on a superconducting quantum processor. ]]>
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                                                                        <pubDate>Fri, 03 Apr 2026 11:00:00 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/bV9aDvTM6a6xTtBdjyx2oa-1280-80.jpg">
                                                            <media:credit><![CDATA[Flavio Coelho via Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[A new study from a team of researchers, including IBM, has found a way to possibly overcome a key challenge in quantum computing. ]]></media:description>                                                            <media:text><![CDATA[Spirals of bright green and purple particles swirl clockwise over a navy blue background]]></media:text>
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                                                            <title><![CDATA[ Quantum computers need just 10,000 qubits — not the millions we assumed — to break the world's most secure encryption algorithms ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/quantum/quantum-computers-need-just-10-000-qubits-not-the-millions-we-assumed-to-break-the-worlds-most-secure-encryption-algorithms</link>
                                                                            <description>
                            <![CDATA[ Future quantum computers will need to be far less powerful than we thought to threaten the security of encrypted messages, banking information and other sensitive data. ]]>
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                                                                        <pubDate>Tue, 31 Mar 2026 15:27:14 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/LbrLw7xKSfrP2T4wTpAVRA-1280-80.jpg">
                                                            <media:credit><![CDATA[Caltech/Robert Hurt (IPAC-SELab)]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Previous error-correction schemes require hundreds of physical qubits per logical qubit, but the new scheme, depicted on the right, reduces this overhead by more than 100-fold.]]></media:description>                                                            <media:text><![CDATA[An illustration of a grid of blue squares with floating yellow dots over them with a zoom out of the grid on the right]]></media:text>
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                                                            <title><![CDATA[ Ultrafast quantum chemistry engine could speed up the development of new medicines and materials ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/ultrafast-quantum-chemistry-engine-could-speed-up-the-development-of-new-medicines-and-materials</link>
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                            <![CDATA[ The powerful software can reduce the time needed to simulate reactions with large molecules from weeks to just minutes. ]]>
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                                                                        <pubDate>Sun, 22 Feb 2026 13:00:00 +0000</pubDate>                                                                                                                                <updated>Wed, 18 Mar 2026 10:01:00 +0000</updated>
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                                                    <category><![CDATA[Technology]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Skyler Ware ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/zJYEjXGLWTGNpr43RMVunB-1280-80.jpg">
                                                            <media:credit><![CDATA[QDX]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[An example of a single point energy calculation graphic from EXESS]]></media:description>                                                            <media:text><![CDATA[A 3D illustration of a molecule with hexagonal bonds all on a black background]]></media:text>
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                                                            <title><![CDATA[ Scientists build 'most accurate' quantum computing chip ever thanks to new silicon-based computing architecture  ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/scientists-build-most-accurate-quantum-computing-chip-ever-thanks-to-new-silicon-based-computing-architecture</link>
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                            <![CDATA[ Researchers say they have created the world's first scalable atomic quantum processor that achieves record-breaking 99.99% fidelity. ]]>
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                                                                        <pubDate>Sat, 20 Dec 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:58:46 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/32oxGQ3VGvBhyVdNVPmgCe-1280-80.png">
                                                            <media:credit><![CDATA[yucelyilmaz/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Advanced AI Computer Chip Processors Transmitting Data. Electrical Signals Flowing. Millions of Connections And Signals.]]></media:description>                                                            <media:text><![CDATA[Advanced AI Computer Chip Processors Transmitting Data. Electrical Signals Flowing. Millions of Connections And Signals.]]></media:text>
                                <media:title type="plain"><![CDATA[Advanced AI Computer Chip Processors Transmitting Data. Electrical Signals Flowing. Millions of Connections And Signals.]]></media:title>
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                                                            <title><![CDATA[ Record-breaking feat means information lasts 15 times longer in new kind of quantum processor than those used by Google and IBM  ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/record-breaking-feat-means-information-lasts-15-times-longer-in-new-kind-of-quantum-processor-than-those-used-by-google-and-ibm</link>
                                                                            <description>
                            <![CDATA[ The novel design for the new qubit uses the chemical element tantalum in tandem with a special silicon substrate, creating what researchers say are the most coherent superconducting qubits to date. ]]>
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                                                                        <pubDate>Tue, 16 Dec 2025 12:15:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:37:48 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/sftsvaU7RxhNtzhFh3WEG9-1280-80.jpg">
                                                            <media:credit><![CDATA[Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[The new fabrication method relies on the use of a transition metal called tantalum. ]]></media:description>                                                            <media:text><![CDATA[Close up depiction of a qubit. ]]></media:text>
                                <media:title type="plain"><![CDATA[Close up depiction of a qubit. ]]></media:title>
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                                                            <title><![CDATA[ Breakthrough 3D wiring architecture enables 10,000-qubit quantum processors ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/breakthrough-3d-wiring-architecture-enables-10-000-qubit-quantum-processors</link>
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                            <![CDATA[ The novel 3D wiring architecture and chip fabrication method enable quantum processing units containing 10,000 qubits to fit in a smaller space than today's 100-qubit chips. ]]>
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                                                                        <pubDate>Thu, 11 Dec 2025 14:35:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:05:51 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/Q2LFmwktADn3DpFLeHaT3d-1280-80.png">
                                                            <media:credit><![CDATA[QuantWare]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[A rendering of the VIO-40K QPU.]]></media:description>                                                            <media:text><![CDATA[A 3D rendering of the quantum processing unit.]]></media:text>
                                <media:title type="plain"><![CDATA[A 3D rendering of the quantum processing unit.]]></media:title>
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                                                            <title><![CDATA[ New semiconductor could allow classical and quantum computing on the same chip, thanks to superconductivity breakthrough ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/new-semiconductor-could-allow-classical-and-quantum-computing-on-the-same-chip-thanks-to-superconductivity-breakthrough</link>
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                            <![CDATA[ Researchers believe they can fit 25 million Josephson junctions — a useful component for quantum computing — on one two-inch wafer with this approach. ]]>
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                                                                        <pubDate>Thu, 27 Nov 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:55:58 +0000</updated>
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                                                                                                                    <dc:creator><![CDATA[ Anna Demming ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/ToGWjyakRWVv8Yf7x4xisd-1280-80.png">
                                                            <media:credit><![CDATA[marian/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Conceptual diagram of quantum computing and semiconductor chips, 3D rendering - stock photo.]]></media:description>                                                            <media:text><![CDATA[Conceptual diagram of quantum computing and semiconductor chips, 3D rendering - stock photo.]]></media:text>
                                <media:title type="plain"><![CDATA[Conceptual diagram of quantum computing and semiconductor chips, 3D rendering - stock photo.]]></media:title>
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                                                            <title><![CDATA[ Quantum computing will make cryptography obsolete. But computer scientists are working to make them unhackable. ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-computing-will-make-cryptography-obsolete-but-computer-scientists-are-working-to-make-them-unhackable</link>
                                                                            <description>
                            <![CDATA[ When quantum computers become commonplace, current cryptographic systems will become obsolete. Scientists are racing to get ahead of the problem and keep our data secure. ]]>
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                                                                        <pubDate>Fri, 14 Nov 2025 19:30:53 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:38:01 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Joanna Thompson ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/EZWcZvx5fyEznbw6WtAHrk-1280-80.jpg">
                                                            <media:credit><![CDATA[Supertotto]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[A pixel art-style illustration of a castle representing the protection of data]]></media:description>                                                            <media:text><![CDATA[A pixel art-style illustration of a castle representing the protection of data]]></media:text>
                                <media:title type="plain"><![CDATA[A pixel art-style illustration of a castle representing the protection of data]]></media:title>
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                                                            <title><![CDATA[ IBM unveils two new quantum processors — including one that offers a blueprint for fault-tolerant quantum computing by 2029 ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/ibm-unveils-two-new-quantum-processors-including-one-that-offers-a-blueprint-for-fault-tolerant-quantum-computing-by-2029</link>
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                            <![CDATA[ IBM has released two new complex quantum processors alongside a new framework that would allow us to track the first demonstration of quantum advantage. ]]>
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                                                                        <pubDate>Fri, 14 Nov 2025 16:30:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:37:34 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/g9KVAyi3Eyv88McePsQajb-1280-80.png">
                                                            <media:credit><![CDATA[ IBM]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[IBM&#039;s new Loon processor holds all the hardware components required to demonstrate fault-tolerant quantum computing, scientists say.]]></media:description>                                                            <media:text><![CDATA[ IBM&#039;s new Loom processor ]]></media:text>
                                <media:title type="plain"><![CDATA[ IBM&#039;s new Loom processor ]]></media:title>
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                                                            <title><![CDATA[ Exotic 'time crystals' could be used as memory in quantum computers, promising research finds ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/exotic-time-crystals-could-be-used-as-memory-in-quantum-computers-promising-research-finds</link>
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                            <![CDATA[ Experiments show that a time crystal based on magnons can interact with mechanical waves without being destroyed. ]]>
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                                                                        <pubDate>Wed, 12 Nov 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:28:30 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Anna Demming ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/Be4F2Uh6ZJd5FkLwovXFei-1280-80.png">
                                                            <media:credit><![CDATA[Mikko Raskinen/Aalto University.]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[A time crystal formed on top of a superfluid in ultracold conditions.]]></media:description>                                                            <media:text><![CDATA[A time crystal formed on top of a superfluid in ultracold conditions.]]></media:text>
                                <media:title type="plain"><![CDATA[A time crystal formed on top of a superfluid in ultracold conditions.]]></media:title>
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                                                            <title><![CDATA[ 'This is easily the most powerful quantum computer on Earth': Scientists unveil Helios, a record-breaking quantum system ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/this-is-easily-the-most-powerful-quantum-computer-on-earth-scientists-unveil-helios-a-record-breaking-quantum-system</link>
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                            <![CDATA[ Scientists have built a 98-qubit machine that they say performs better than any other quantum computer in the world. They've used it to gain new insights into superconducting physics. ]]>
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                                                                        <pubDate>Thu, 06 Nov 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:31:30 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/irtSEQujguQfXejUD4dvhB-1280-80.png">
                                                            <media:credit><![CDATA[Quantinuum]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[The Helios quantum processor is fitted with 98 qubits that are divided into 48 logical qubits.]]></media:description>                                                            <media:text><![CDATA[Helios system]]></media:text>
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                                                            <title><![CDATA[ Google's breakthrough 'Quantum Echoes' algorithm pushes us closer to useful quantum computing — running 13,000 times faster than on a supercomputer ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/googles-breakthrough-quantum-echoes-algorithm-pushes-us-closer-to-useful-quantum-computing-running-13-000-times-faster-than-on-a-supercomputer</link>
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                            <![CDATA[ The new quantum computing algorithm, called "Quantum Echoes," is the first that can be independently verified by running it on another quantum computer. ]]>
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                                                                        <pubDate>Wed, 22 Oct 2025 15:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:07:47 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/AmwP8gnw2cYgqo6CoEUJza-1280-80.jpg">
                                                            <media:credit><![CDATA[Google Quantum AI]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[The new algorithm is inspired by the way that sonar works, and scientists used it to solve real-world problems.]]></media:description>                                                            <media:text><![CDATA[A Google quantum computer]]></media:text>
                                <media:title type="plain"><![CDATA[A Google quantum computer]]></media:title>
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                                                            <title><![CDATA[ Quantum computing 'lie detector' finally proves these machines tap into Einstein's spooky action at a distance rather than just faking it ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-computing-lie-detector-finally-proves-these-machines-tap-into-einsteins-spooky-action-at-a-distance-rather-than-just-faking-it</link>
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                            <![CDATA[ Researchers developed an experimental method for confirming quantum activity in a quantum computing system. ]]>
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                                                                        <pubDate>Tue, 21 Oct 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:40:23 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/zLNnY3Ekpp85DrCMuhmEM5-1280-80.jpg">
                                                            <media:credit><![CDATA[Just_Super/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Quantum computing conceptual illustration.]]></media:description>                                                            <media:text><![CDATA[Quantum computing conceptual illustration.]]></media:text>
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                                                            <title><![CDATA[ 'This moves the timeline forward significantly': Quantum computing breakthrough could slash pesky errors by up to 100 times ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/this-moves-the-timeline-forward-significantly-quantum-computing-breakthrough-could-slash-pesky-errors-by-up-to-100-times</link>
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                            <![CDATA[ Researchers used a new technique called algorithmic fault tolerance (AFT) to cut the time and computational cost of quantum error correction by up to 100 times in simulations of neutral-atom architecture. ]]>
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                                                                        <pubDate>Fri, 17 Oct 2025 11:30:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:37:19 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/4ZNNHvXuKe65UuKkzNESHC-1280-80.png">
                                                            <media:credit><![CDATA[Jorg Greuel/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Quantum computing concept (artist&#039;s impression). A qubit, short for &quot;quantum bit,&quot; is the fundamental unit of information in quantum computing. Unlike classical bits, which can be either 0 or 1, a qubit can exist in a superposition of both states simultaneously, enabling powerful computational possibilities - digitally generated image]]></media:description>                                                            <media:text><![CDATA[Quantum computing concept (artist&#039;s impression). A qubit, short for &quot;quantum bit,&quot; is the fundamental unit of information in quantum computing. Unlike classical bits, which can be either 0 or 1, a qubit can exist in a superposition of both states simultaneously, enabling powerful computational possibilities - digitally generated image]]></media:text>
                                <media:title type="plain"><![CDATA[Quantum computing concept (artist&#039;s impression). A qubit, short for &quot;quantum bit,&quot; is the fundamental unit of information in quantum computing. Unlike classical bits, which can be either 0 or 1, a qubit can exist in a superposition of both states simultaneously, enabling powerful computational possibilities - digitally generated image]]></media:title>
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                                                            <title><![CDATA[ Quantum record smashed as scientists build mammoth 6,000-qubit system — and it works at room temperature ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-record-smashed-as-scientists-build-mammoth-6-000-qubit-system-and-it-works-at-room-temperature</link>
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                            <![CDATA[ A new system, made by splitting a laser beam into 12,000 tweezers and trapping 6,100 neutral atom qubits, hit new heights for coherence times. ]]>
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                                                                        <pubDate>Tue, 07 Oct 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:57:49 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
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                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/bMxJneDG6tWERC49DHjvAa-1280-80.png">
                                                            <media:credit><![CDATA[Baac3nes/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Computer generated image of a laser beam creating a triangular shape in the center of the image.]]></media:description>                                                            <media:text><![CDATA[Computer generated image of a laser beam creating a triangular shape in the center of the image.]]></media:text>
                                <media:title type="plain"><![CDATA[Computer generated image of a laser beam creating a triangular shape in the center of the image.]]></media:title>
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                                                            <title><![CDATA[ Scientists unveil world's first quantum computer built with regular silicon chips ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/scientists-unveil-worlds-first-quantum-computer-built-with-regular-silicon-chips</link>
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                            <![CDATA[ A London-based startup has created the world's first full-stack quantum computer using a standard silicon CMOS chip fabrication process ]]>
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                                                                        <pubDate>Fri, 26 Sep 2025 14:45:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:22:45 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/fSXh76fBPbW47WDbngbG7g-1280-80.jpg">
                                                            <media:credit><![CDATA[Quantum Motion]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Full-stack silicon CMOS quantum computer]]></media:description>                                                            <media:text><![CDATA[Full-stack silicon CMOS quantum computer]]></media:text>
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                                                            <title><![CDATA[ Scientific breakthrough leads to 'fluorescent biological qubit' — it could mean turning your cells into quantum sensors ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/scientific-breakthrough-leads-to-fluorescent-biological-qubit-it-could-mean-turning-your-cells-into-quantum-sensors</link>
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                            <![CDATA[ Fluorescent proteins can be turned into qubits within cells and could give us a deeper understanding of biology at the nanoscale level. ]]>
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                                                                        <pubDate>Thu, 25 Sep 2025 12:00:00 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Technology]]></category>
                                                                                                <author><![CDATA[ roland.moore-colyer@futurenet.com (Roland Moore-Colyer) ]]></author>                    <dc:creator><![CDATA[ Roland Moore-Colyer ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/jei8vYkmeWBYARJYDsvt4b-1280-80.jpg">
                                                            <media:credit><![CDATA[optimarc/Shutterstock]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[The same proteins that make jellyfish glow could be used as biological qubits ]]></media:description>                                                            <media:text><![CDATA[Aurelia jelly fish ( (also called common jellyfish, moon jellyfish, moon jelly, saucer jelly, Cnidaria, Scyphozoa),  up close.]]></media:text>
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                                                            <title><![CDATA[ Quantum internet inches closer thanks to new chip — it helps beam quantum signals over real-world fiber optic cables ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-internet-inches-closer-thanks-to-new-chip-it-helps-beam-quantum-signals-over-real-world-fiber-optic-cables</link>
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                            <![CDATA[ Researchers used the Q‑Chip to send quantum data over standard fiber using Internet Protocol (IP), showing that future quantum networks could run on today’s internet infrastructure. ]]>
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                                                                        <pubDate>Mon, 22 Sep 2025 11:50:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:20:53 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/XfZffhab8Dfn2bPw6nmjvM-1280-80.png">
                                                            <media:credit><![CDATA[MirageC/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Colorful illuminated light effect fiber optics, macro shot.]]></media:description>                                                            <media:text><![CDATA[Colorful illuminated light effect fiber optics, macro shot.]]></media:text>
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                                                            <title><![CDATA[ Tiny cryogenic device cuts quantum computer heat emissions by 10,000 times — and it could be launched in 2026 ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/tiny-cryogenic-device-cuts-quantum-computer-heat-emissions-by-10-000-times-and-it-could-be-launched-in-2026</link>
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                            <![CDATA[ Scientists invent a new device that aims to solve thermal interference from electronic components — one of the biggest barriers to commercial quantum computing. ]]>
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                                                                        <pubDate>Thu, 11 Sep 2025 11:30:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:57:06 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/96uBEVuXxpMmHzFWHfZiRi-1280-80.jpg">
                                                            <media:credit><![CDATA[sakkmesterke via Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[a blue ball of lightning]]></media:description>                                                            <media:text><![CDATA[a blue ball of lightning]]></media:text>
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                                                            <title><![CDATA[ Japan launches its first homegrown quantum computer ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/japan-launches-its-first-homegrown-quantum-computer</link>
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                            <![CDATA[ Japan's first entirely homegrown quantum computer uses superconducting qubits and components made entirely domestically. ]]>
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                                                                        <pubDate>Tue, 26 Aug 2025 12:14:41 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:28:14 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/ypFA6GcDwv58qLYJ79RuWC-1280-80.jpg">
                                                            <media:credit><![CDATA[QIQB, The University of Osaka]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Installation of the fully quantum computer in progress.]]></media:description>                                                            <media:text><![CDATA[Installation of the fully quantum computer in progress.]]></media:text>
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                                                            <title><![CDATA[ Secretive X37-B space plane to test quantum navigation system — scientists hope it will one day replace GPS ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/engineering/secretive-x37-b-space-plane-to-test-quantum-navigation-system-scientists-hope-it-will-one-day-replace-gps</link>
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                            <![CDATA[ The experimental sensor could be groundbreaking. ]]>
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                                                                        <pubDate>Tue, 19 Aug 2025 11:00:00 +0000</pubDate>                                                                                                                                                                                                                                <category><![CDATA[Engineering]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                                                                                    <dc:creator><![CDATA[ Samuel Lellouch ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/fukppbbsTbTS653dx3wXVc-1280-80.jpg">
                                                            <media:credit><![CDATA[Veloz Alexander, US Space Force]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[A photo of the X37-B space plane on a tarmac at night]]></media:description>                                                            <media:text><![CDATA[A photo of the X37-B space plane on a tarmac at night]]></media:text>
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                                                            <title><![CDATA[ Meet the 'neglectons': Previously overlooked particles that could revolutionize quantum computing ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/physics-mathematics/meet-the-neglectons-previously-overlooked-particles-that-could-revolutionize-quantum-computing</link>
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                            <![CDATA[ When mathematicians revived ignored mathematical structures, they found that overlooked particles, called "neglectons," could complete the quantum computing puzzle. ]]>
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                                                                        <pubDate>Sat, 16 Aug 2025 17:12:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:02:08 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Larissa G. Capella ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/QqUzVeYz9UYRia93xhHaUB-1280-80.jpg">
                                                            <media:credit><![CDATA[Andriy Onufriyenko via Getty Images]]></media:credit>
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                                                            <title><![CDATA[ IBM and Moderna have simulated the longest mRNA pattern without AI — they used a quantum computer instead ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/ibm-and-moderna-have-simulated-the-longest-mrna-pattern-without-ai-they-used-a-quantum-computer-instead</link>
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                            <![CDATA[ Scientists used IBM's R2 Heron quantum processor to predict the secondary protein structure of a 60-nucleotide-long mRNA sequence. ]]>
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                                                                        <pubDate>Sat, 09 Aug 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:38:03 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
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                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/kafFKEzebt3WC3X55HKjdT-1280-80.jpg">
                                                            <media:credit><![CDATA[CHRISTOPH BURGSTEDT/SCIENCE PHOTO LIBRARY via Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[a digital illustration of an unwinding ribosome]]></media:description>                                                            <media:text><![CDATA[a digital illustration of an unwinding ribosome]]></media:text>
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                                                            <title><![CDATA[ 'Like a master Tetris player': Scientists invent quantum virtual machines — they'll slash turnaround times from days to hours ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/like-a-master-tetris-player-scientists-invent-quantum-virtual-machines-theyll-slash-turnaround-times-from-days-to-hours</link>
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                            <![CDATA[ New quantum computing system allows multiple users to run programs simultaneously using virtual machines. ]]>
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                                                                        <pubDate>Fri, 08 Aug 2025 11:30:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:19:35 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/renuSYJt6WinDPWpphELCm-1280-80.jpg">
                                                            <media:credit><![CDATA[Yuichiro Chino via Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[an illustration of a digital network]]></media:description>                                                            <media:text><![CDATA[an illustration of a digital network]]></media:text>
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                                                            <title><![CDATA[ Scientists hit quantum computer error rate of 0.000015% — a world record achievement that could lead to smaller and faster machines ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/scientists-hit-quantum-computer-error-rate-of-0-000015-percent-a-world-record-achievement-that-could-lead-to-smaller-and-faster-machines</link>
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                            <![CDATA[ The record-breaking achievement could lead to practical, utility-scale quantum computers that are both smaller and faster. ]]>
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                                                                        <pubDate>Mon, 28 Jul 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:31:57 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/iZBsrqPSBom8Lb2m7EDyPZ-1280-80.png">
                                                            <media:credit><![CDATA[koto_feja/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Abstract Artificial Intelligence component - 3d rendered close up image of CPU.]]></media:description>                                                            <media:text><![CDATA[Abstract Artificial Intelligence component - 3d rendered close up image of CPU.]]></media:text>
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                                                            <title><![CDATA[ Scientists make 'magic state' breakthrough after 20 years — without it, quantum computers can never be truly useful ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/scientists-make-magic-state-breakthrough-after-20-years-without-it-quantum-computers-can-never-be-truly-useful</link>
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                            <![CDATA[ Scientists demonstrate a process called "magic state distillation" in logical qubits for the first time, meaning we can now build quantum computers that are both error-free and more powerful than supercomputers. ]]>
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                                                                        <pubDate>Thu, 17 Jul 2025 15:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:24:57 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Keumars Afifi-Sabet ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/bKTpqQzZvV3Q33yLgZ3VpG-1280-80.png">
                                                            <media:credit><![CDATA[QuEra]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Computing room.]]></media:description>                                                            <media:text><![CDATA[Computing room.]]></media:text>
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                                                            <title><![CDATA[ Quantum materials with a 'hidden metallic state' could make electronics 1,000 times faster ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/electronics/quantum-materials-with-a-hidden-metallic-state-could-make-electronics-1-000-times-faster</link>
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                            <![CDATA[ By heating and cooling a quantum material called 1T-TaS₂, researchers were able to control its conductive properties, showing that this type of material could speed up electronic processing one thousand fold. ]]>
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                                                                        <pubDate>Thu, 10 Jul 2025 10:15:00 +0000</pubDate>                                                                                                                                <updated>Thu, 10 Jul 2025 22:12:28 +0000</updated>
                                                                                                                                            <category><![CDATA[Electronics]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                                                                <author><![CDATA[ perri.thaler@futurenet.com (Perri Thaler) ]]></author>                    <dc:creator><![CDATA[ Perri Thaler ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/TNqGVdMPRHgVAFfepggzBE-1280-80.jpg">
                                                            <media:credit><![CDATA[Matthew Modoono/Northeastern University]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Researchers used controlled temperature changes to make a quantum material switch between states, a discovery expected to make electronics faster.]]></media:description>                                                            <media:text><![CDATA[A man wearing protective eye wear leans over a machine with a blue laser.]]></media:text>
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                                                            <title><![CDATA[ Small, room-temperature quantum computers that use light on the horizon after breakthrough, scientists say ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/small-room-temperature-quantum-computers-that-use-light-on-the-horizon-after-breakthrough-scientists-say</link>
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                            <![CDATA[ Scientists say they’ve cracked a key challenge in scalable quantum hardware after generating an error-correcting, light-based qubit on a chip for the first time. ]]>
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                                                                        <pubDate>Fri, 04 Jul 2025 10:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:49:48 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/krFvpCJZtErpxAcJMXcYpB-1280-80.jpg">
                                                            <media:credit><![CDATA[Getty Images/KTSDesign/SCIENCEPHOTOLIBRARY]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Scientists say this is the first time a specific type of error-resistant quantum state has been generated using a process compatible with conventional chip manufacturing.]]></media:description>                                                            <media:text><![CDATA[A render of a golden chip that is emitting some energy]]></media:text>
                                <media:title type="plain"><![CDATA[A render of a golden chip that is emitting some energy]]></media:title>
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                                                            <title><![CDATA[ 'Quantum AI' algorithms already outpace the fastest supercomputers, study says ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-ai-algorithms-already-outpace-the-fastest-supercomputers-study-says</link>
                                                                            <description>
                            <![CDATA[ Researchers have successfully demonstrated quantum speedup in kernel-based machine learning. ]]>
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                                                                        <pubDate>Fri, 27 Jun 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:35:32 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/MgPiyN2pCdUfaqNot7MJQE-1280-80.jpg">
                                                            <media:credit><![CDATA[BlackJack3D via Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[AI brain concept. Conceptual artificial intelligence mind chip in the shape of a brain.]]></media:description>                                                            <media:text><![CDATA[AI brain concept. Conceptual artificial intelligence mind chip in the shape of a brain.]]></media:text>
                                <media:title type="plain"><![CDATA[AI brain concept. Conceptual artificial intelligence mind chip in the shape of a brain.]]></media:title>
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                                                            <title><![CDATA[ Scientists forge path to the first million-qubit processor for quantum computers after 'decade in the making' breakthrough ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/this-result-has-been-more-than-a-decade-in-the-making-millions-of-qubits-on-a-single-chip-now-possible-after-cryogenic-breakthrough</link>
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                            <![CDATA[ Scientists in Australia have developed a quantum control chip that removes a key obstacle to getting qubits into practical, real-world computing systems. ]]>
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                                                                        <pubDate>Wed, 25 Jun 2025 15:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:46:49 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/zdx4HgQxLhNYgvq7EtB3N3-1280-80.jpg">
                                                            <media:credit><![CDATA[University of Sydney]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Quantum control chip closeup.]]></media:description>                                                            <media:text><![CDATA[Quantum control chip closeup.]]></media:text>
                                <media:title type="plain"><![CDATA[Quantum control chip closeup.]]></media:title>
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                                                            <title><![CDATA[ 'A first in applied physics': Breakthrough quantum computer could consume 2,000 times less power than a supercomputer and solve problems 200 times faster ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/a-first-in-applied-physics-breakthrough-quantum-computer-could-consume-2-000-times-less-power-than-a-supercomputer-and-solve-problems-200-times-faster</link>
                                                                            <description>
                            <![CDATA[ Scientists have built a compact physical qubit with built-in error correction, and now say it could be scaled into a 1,000-qubit machine that is small enough to fit inside a data center. They plan to release this machine in 2031. ]]>
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                                                                        <pubDate>Wed, 25 Jun 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:04:03 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Owen Hughes ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/GdTJRoC2HBBLoxRybTTDuc-1280-80.jpg">
                                                            <media:credit><![CDATA[Peter Hansen/ Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Nord Quantique plans to scale this design into a 1,000-logical-qubit machine by 2031. ]]></media:description>                                                            <media:text><![CDATA[3d render of the lower portion of a quantum computer featuring the qubit chip.]]></media:text>
                                <media:title type="plain"><![CDATA[3d render of the lower portion of a quantum computer featuring the qubit chip.]]></media:title>
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                                                            <title><![CDATA[ 'Reliable quantum computing is here': Novel approach to error-correction can reduce errors in future systems up to 1,000 times, Microsoft scientists say ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/reliable-quantum-computing-is-here-new-approach-error-correction-reduce-errors-up-to-1000-times-microsoft-scientists-say</link>
                                                                            <description>
                            <![CDATA[ Microsoft scientists developed a 4D geometric coding method that reduces errors 1,000-fold in quantum computers. ]]>
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                                                                        <pubDate>Fri, 20 Jun 2025 11:15:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:01:14 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/u7dy5mmnkHNccBW6wRd2Qk-1280-80.jpg">
                                                            <media:credit><![CDATA[Constantine Johnny/Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Most current error-correction techniques are either difficult to scale, resource-intensive, or both. Microsoft scientists claim they have solved the issue with new 4D codes.]]></media:description>                                                            <media:text><![CDATA[Glowing red and blue digital network in a torus shape. 3D Rendering.]]></media:text>
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                                                            <title><![CDATA[ IBM will build monster 10,000-qubit quantum computer by 2029 after 'solving science' behind fault tolerance — the biggest bottleneck to scaling up ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/ibm-will-build-monster-10-000-qubit-quantum-computer-by-2029-after-solving-science-behind-fault-tolerance</link>
                                                                            <description>
                            <![CDATA[ The quantum computer, called Starling, will use 200 logical qubits — and IBM plans to follow this up with a 2,000-logical-qubit machine in 2033 ]]>
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                                                                        <pubDate>Tue, 10 Jun 2025 13:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:52:41 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Tristan Greene ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/RmZTr6pnaibcoh5zAE3rzQ-1280-80.jpg">
                                                            <media:credit><![CDATA[IBM]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[IBM has unveiled its plans to build Starling, the world&#039;s first fault-tolerant quantum computer, by 2029.]]></media:description>                                                            <media:text><![CDATA[IBM has unveiled its plans to build Starling, the world&#039;s first fault-tolerant quantum computer, by 2029.]]></media:text>
                                <media:title type="plain"><![CDATA[IBM has unveiled its plans to build Starling, the world&#039;s first fault-tolerant quantum computer, by 2029.]]></media:title>
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                                                            <title><![CDATA[ Building quantum supercomputers: Scientists connect two quantum processors using existing fiber optic cables for the first time ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/building-quantum-supercomputers-scientists-connect-two-quantum-processors-using-existing-fiber-optic-cables-for-the-first-time</link>
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                            <![CDATA[ Scientists have connected two quantum computers, paving the way for distributed quantum computing, quantum supercomputers and a quantum internet. ]]>
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                                                                        <pubDate>Wed, 21 May 2025 09:00:10 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:02:43 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Peter Ray Allison ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/eBVxXigsBJddWn8W6KQzYE-1280-80.png">
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                                                                                                                                                                                                                                    <media:description><![CDATA[Conceptual image of the internet with a glowing wave of many words flowing over a black background.]]></media:description>                                                            <media:text><![CDATA[Conceptual image of the internet with a glowing wave of many words flowing over a black background.]]></media:text>
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                                                            <title><![CDATA[ Quantum computing: What is quantum error correction (QEC) and why is it so important?  ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/what-is-quantum-error-correction-qec</link>
                                                                            <description>
                            <![CDATA[ Quantum computers can one day be vastly more powerful than the most powerful supercomputers on the planet — but only if scientists find ways to fix the extremely high error rate in qubits. ]]>
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                                                                        <pubDate>Thu, 15 May 2025 10:00:10 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 11:54:05 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Edd Gent ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/FhkAxPEYVPw5Qc8NEsLiag-1280-80.png">
                                                            <media:credit><![CDATA[Dragon Claws/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Tower of device made of copper discs connected by glowing wires and vacuum tubes. Illustration of the concept of quantum computer and computing]]></media:description>                                                            <media:text><![CDATA[Tower of device made of copper discs connected by glowing wires and vacuum tubes. Illustration of the concept of quantum computer and computing]]></media:text>
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                                                            <title><![CDATA[ World's first silicon-based quantum computer is small enough to plug into a regular power socket  ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/worlds-first-silicon-based-quantum-computer-is-small-enough-to-plug-into-a-regular-power-socket</link>
                                                                            <description>
                            <![CDATA[ An Irish startup has created the world's first silicon-based quantum computer — it can still integrate seamlessly with classical computing in data centers. ]]>
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                                                                        <pubDate>Wed, 07 May 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:30:39 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/cRw9szsLkmYENL9tLmSnfZ-1280-80.jpg">
                                                            <media:credit><![CDATA[Fergal Phillips]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[This new quantum computer uses silicon-based spin qubits as opposed to superconducting qubits or trapped-ion qubits deployed in most other machines.]]></media:description>                                                            <media:text><![CDATA[quantum chip.]]></media:text>
                                <media:title type="plain"><![CDATA[quantum chip.]]></media:title>
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                                                            <title><![CDATA[ Quantum 'miracle material' can store information in a single dimension thanks to newly discovered magnetic switching ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/quantum-miracle-material-can-store-information-in-a-single-dimension-thanks-to-newly-discovered-magnetic-switching</link>
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                            <![CDATA[ Scientists have developed a method for storing quantum information in a single dimension, thereby reducing decoherence, using chromium sulfide bromide. ]]>
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                                                                        <pubDate>Mon, 05 May 2025 11:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:37:02 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Peter Ray Allison ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/JfotNfANuAtzgBRHzfTXb3-1280-80.jpg">
                                                            <media:credit><![CDATA[Brad Baxley, Part to Whole. For use reporting on this study, DOI: 10.1038/s41563-025-02120-1]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[Magnetic switch traps quantum information carriers in one dimension.]]></media:description>                                                            <media:text><![CDATA[The illustration shows the layers of semiconductor crystal stacked together.]]></media:text>
                                <media:title type="plain"><![CDATA[The illustration shows the layers of semiconductor crystal stacked together.]]></media:title>
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                                                            <title><![CDATA[ World's first operating system for quantum computers unveiled — it can be used to manage a future quantum internet  ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/worlds-first-operating-system-for-quantum-computers-unveiled-it-can-be-used-to-manage-a-future-quantum-internet</link>
                                                                            <description>
                            <![CDATA[ QNodeOS is the world's first operating system designed for quantum computers and will enable connections between different types of quantum computers. ]]>
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                                                                        <pubDate>Wed, 23 Apr 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:50:52 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Peter Ray Allison ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/uH9sLBu6TRLU4jXTdeRmYe-1280-80.jpg">
                                                            <media:credit><![CDATA[hh5800 via Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[The new operating system is the first in the world that allows quantum computers with different kinds of qubits to function together in a single network.]]></media:description>                                                            <media:text><![CDATA[an abstract illustration with a futuristic cube in the middle and dots and lines of light around it]]></media:text>
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                                                            <title><![CDATA[ New benchmark will reveal when quantum computers overtake the fastest supercomputers, scientists say ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/new-qpu-benchmark-will-show-when-quantum-computers-surpass-existing-computing-capabilities-scientists-say</link>
                                                                            <description>
                            <![CDATA[ A new benchmark performed on chips from five different vendors has indicated how we can measure QPU performance as quantum computers become more advanced and useful. ]]>
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                                                                        <pubDate>Tue, 22 Apr 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:39:30 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/YXhvnuAAxoQmToCjjnQXUa-1280-80.png">
                                                            <media:credit><![CDATA[Vertigo3d/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Digital abstract CPU.]]></media:description>                                                            <media:text><![CDATA[Digital abstract CPU.]]></media:text>
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                                                            <title><![CDATA[ Schrödinger's cat-inspired quantum computing now 160 times more reliable thanks to new discovery ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/schrodingers-cat-inspired-quantum-computing-now-160-times-more-reliable-thanks-to-new-discovery</link>
                                                                            <description>
                            <![CDATA[ A new technique improves the reliability of cat qubits by squeezing their probabilistic states. This could improve their reliability and lifetime, and pave the way for accurate quantum computing. ]]>
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                                                                        <pubDate>Mon, 21 Apr 2025 12:00:00 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:53:45 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Peter Ray Allison ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/LBZVETW7xqBj92aC6X9R4R-1280-80.jpg">
                                                            <media:credit><![CDATA[VICTOR de SCHWANBERG/SCIENCE PHOTO LIBRARY/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[Conceptual illustration of a cat sitting on a computer chip.]]></media:description>                                                            <media:text><![CDATA[Conceptual illustration of a cat sitting on a computer chip.]]></media:text>
                                <media:title type="plain"><![CDATA[Conceptual illustration of a cat sitting on a computer chip.]]></media:title>
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                                                            <title><![CDATA[ Scientists observe new quantum phase that could have major implications for quantum computing ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/scientists-observe-new-quantum-phase-that-could-have-major-implications-for-quantum-computing</link>
                                                                            <description>
                            <![CDATA[ The exotic quantum phase, predicted over half a century ago, could lead to advances in quantum computing, sensors and communication technology. ]]>
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                                                                        <pubDate>Thu, 17 Apr 2025 11:15:20 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:24:12 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/png" url="https://cdn.mos.cms.futurecdn.net/qDa2wHwbn7KFYDQ63G8tXM-1280-80.png">
                                                            <media:credit><![CDATA[koto_feja/Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[3d rendered image of quantum entanglement. ]]></media:description>                                                            <media:text><![CDATA[3d rendered image of quantum entanglement. ]]></media:text>
                                <media:title type="plain"><![CDATA[3d rendered image of quantum entanglement. ]]></media:title>
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                                                            <title><![CDATA[ What is quantum superposition and what does it mean for quantum computing? ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/what-is-quantum-superposition-and-what-does-it-mean-for-quantum-computing</link>
                                                                            <description>
                            <![CDATA[ Quantum superposition is a phenomenon in which a tiny particle can be in two states at the same time — but only if it is not being directly observed. ]]>
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                                                                        <pubDate>Mon, 14 Apr 2025 16:00:10 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:39:26 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Jess Thomson ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/tvPJuuQxrcnVsRBat8zNKE-1280-80.jpg">
                                                            <media:credit><![CDATA[VICTOR de SCHWANBERG/SCIENCE PHOTO LIBRARY via Getty Images]]></media:credit>
                                                                                                                                                                                                                                    <media:description><![CDATA[an abstract illustration depicting quantum entanglement]]></media:description>                                                            <media:text><![CDATA[an abstract illustration depicting quantum entanglement]]></media:text>
                                <media:title type="plain"><![CDATA[an abstract illustration depicting quantum entanglement]]></media:title>
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                                                            <title><![CDATA[ Physicists create hottest Schrödinger's cat ever in quantum technology breakthrough ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/physics-mathematics/quantum-physics/physicists-create-hottest-schrodingers-cat-ever-in-quantum-technology-breakthrough</link>
                                                                            <description>
                            <![CDATA[ Physicists have replicated the famous Schrödinger's cat experiment at hotter temperatures than ever before. The breakthrough is a small but significant step toward quantum computers that can work at normal temperatures. ]]>
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                                                                        <pubDate>Wed, 09 Apr 2025 14:44:12 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 13:37:50 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                <author><![CDATA[ ben.turner@futurenet.com (Ben Turner) ]]></author>                    <dc:creator><![CDATA[ Ben Turner ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/M5ZZpwXAgiJorpSyAWxDaY-1280-80.jpg">
                                                            <media:credit><![CDATA[Alamy]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[A digitally-enhanced photo of a cat.]]></media:description>                                                            <media:text><![CDATA[A digitally-enhanced photo of a cat.]]></media:text>
                                <media:title type="plain"><![CDATA[A digitally-enhanced photo of a cat.]]></media:title>
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                                                            <title><![CDATA[ Quantum computing breakthrough could make 'noise' — forces that disrupt calculations — a thing of the past ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/breakthrough-that-shields-quantum-information-from-noise-brings-a-quantum-internet-one-step-closer</link>
                                                                            <description>
                            <![CDATA[ Useful quantum networks are hobbled by the problem of decoherence from environmental "noise." But a new breakthrough could change that. ]]>
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                                                                        <pubDate>Wed, 09 Apr 2025 12:13:20 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:27:42 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                <author><![CDATA[ ben.turner@futurenet.com (Ben Turner) ]]></author>                    <dc:creator><![CDATA[ Ben Turner ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/ebej3wXq74BCK9nc8JFbCK-1280-80.jpg">
                                                            <media:credit><![CDATA[Getty Images]]></media:credit>
                                                                                                                                                                        <media:description><![CDATA[An artist&#039;s illustration of an entangled qubit inside a quantum computer.]]></media:description>                                                            <media:text><![CDATA[An artist&#039;s illustration of an entangled qubit inside a quantum computer.]]></media:text>
                                <media:title type="plain"><![CDATA[An artist&#039;s illustration of an entangled qubit inside a quantum computer.]]></media:title>
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                                                            <title><![CDATA[ MIT invents new way for QPUs to communicate — paving the way for a scalable 'quantum supercomputer' ]]></title>
                                                                                                                                                                                                <link>https://www.livescience.com/technology/computing/mit-invents-new-way-for-qpus-to-communicate-paving-the-way-for-a-scalable-quantum-supercomputer</link>
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                            <![CDATA[ A new device enables remote entanglement, allowing distant quantum processors to communicate with one another with reduced error rates. ]]>
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                                                                        <pubDate>Sun, 06 Apr 2025 12:00:20 +0000</pubDate>                                                                                                                                <updated>Fri, 13 Feb 2026 12:32:12 +0000</updated>
                                                                                                                                            <category><![CDATA[Quantum Computing]]></category>
                                                    <category><![CDATA[Technology]]></category>
                                                    <category><![CDATA[Computing]]></category>
                                                                                                                    <dc:creator><![CDATA[ Alan Bradley ]]></dc:creator>                                                                                                    <media:content type="image/jpeg" url="https://cdn.mos.cms.futurecdn.net/YaiSEzyaW6cGCZ5yER7443-1280-80.jpg">
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                                                                                                                                                                                                                                    <media:description><![CDATA[Futuristic CPU design elements on black background. Six items set.]]></media:description>                                                            <media:text><![CDATA[Futuristic CPU design elements on black background. Six items set.]]></media:text>
                                <media:title type="plain"><![CDATA[Futuristic CPU design elements on black background. Six items set.]]></media:title>
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