JWST pinpoints most distant fast radio burst 10 billion light-years away
JWST identified the host galaxy of FRB 20240304B, the most distant fast radio burst yet, located over 10 billion light-years away. This discovery reveals that such energetic events existed when the uโฆ
James Webb Space Telescope (JWST) has pinpointed the most distant fast radio burst (FRB) ever recorded, a brief, intense radio flash named FRBโฏ20240304B that came from more than 10โฏbillion lightโyears away. The burst was first detected by MeerKAT, a 64โantenna radio array in South Africa, and its precise sky coordinates were later confirmed by JWSTโs nearโinfrared instruments.
Fast radio bursts are millisecondโlong pulses of radio energy whose origins remain a mystery. Thousands of FRBs have been catalogued, but their short duration and the faintness of their host galaxies make them hard to study. FRBโฏ20240304B pushes the frontier, more than doubling the previous distance record for an FRB and showing that these events were already happening when the universe was only about three billion years old. The discovery was published in the journal *Science* on Octoberโฏ8.
JWSTโs role was decisive. After MeerKAT identified the burstโs position, JWSTโs NearโInfrared Camera captured a very deep image of the field, revealing a faint galaxy exactly where the burst was expected. JWSTโs NearโInfrared Spectrograph then measured the galaxyโs light, finding signatures of hydrogen and oxygen but very little heavier elementsโa metalโpoor environment. The galaxy is also actively forming stars. These traits suggest the burst might be linked to a magnetar, a highly magnetized neutron star that can form after a supernova. Groundโbased telescopes had seen nothing in the area, because the galaxy was too dim for their instruments; JWSTโs sensitivity made the detection possible.
The finding opens a new window on the early universe. By locating host galaxies of distant FRBs, astronomers can study the conditions that produce these powerful bursts and use them as probes of the intergalactic medium. JWSTโs Directorโs Discretionary Time program, which gave the team priority access to the telescope, proved essential for this timeโsensitive observation. Future studies will aim to find more highโredshift FRBs, test the magnetar hypothesis, and refine our understanding of how the first generations of stars shaped the cosmos.
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