Gigantic Radio Telescope to Search for First Stars and Galaxies

lofar cygnus a black hole
The giant LOFAR radio telescope network will be used, among other things, to take a close look at giant black holes like the one at the heart of active galaxy Cygnus A (shown here), which is about 700 million light-years from Earth. This image from LOFAR shows plasma jets from the black hole that stretch 2,000 light-years from the core of Cygnus A.
(Image credit: J. McKean and M. Wise, ASTRON)

More than 20,000 radio antennas will soon connect over the Internet to scan largely unexplored radio frequencies, hunting for the first stars and galaxies and potentially signals of extraterrestrial intelligence.

The Low Frequency Array (LOFAR) will consist of banks of antennas in 48 stations in the Netherlands and elsewhere in Europe, all hooked up by fiber optic cables. Signals from these stations will be combined using a supercomputer, transforming the array into "perhaps the most complex and versatile radio telescope ever attempted," said Heino Falcke, chairman of the board for the International LOFAR Telescope.

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Charles Q. Choi
Live Science Contributor
Charles Q. Choi is a contributing writer for Live Science and Space.com. He covers all things human origins and astronomy as well as physics, animals and general science topics. Charles has a Master of Arts degree from the University of Missouri-Columbia, School of Journalism and a Bachelor of Arts degree from the University of South Florida. Charles has visited every continent on Earth, drinking rancid yak butter tea in Lhasa, snorkeling with sea lions in the Galapagos and even climbing an iceberg in Antarctica.