Radio burst spotted in our galaxy for first time

Multiple telescopes detected a bright fast radio burst from within our Milky Way, with the source being galactic magnetar SGR 1935+2154. PHOTO: AFP

PARIS • Astrophysicists have detected a burst of cosmic radio waves within our galaxy for the first time and identified its source, according to research published on Wednesday that sheds new light on one of the mysteries of the universe.

The origin of powerful fast radio bursts (FRBs) - intense flashes of radio emission that last only a few milliseconds - have puzzled scientists since they were first detected a little over a decade ago.

They are typically extra-galactic, meaning they originate outside our galaxy, but on April 28, multiple telescopes detected a bright FRB from the same area within our Milky Way.

Importantly, they were also able to pin down the source: galactic magnetar SGR 1935+2154.

Magnetars, young neutron stars that are the most magnetic objects in the universe, have long been prime suspects in the hunt for the source of these radio bursts.

But this discovery marks the first time that astronomers have been able to directly trace the signal back to a magnetar.

According to Mr Christopher Bochenek, whose Survey for Transient Astronomical Radio Emission 2 (Stare2) in the United States was one of the teams to spot the burst, the magnetar emitted in about one millisecond as much energy as the Sun's radio waves do in 30 seconds.

He said the burst was "so bright" that theoretically if you had a recording of the raw data from your mobile phone's 4G LTE receiver and knew what to look for, "you might have found this signal that came about halfway across the galaxy" in the phone data. This energy was comparable to FRBs from outside the galaxy, he said, strengthening the case for magnetars to be the source of most extra-galactic bursts.

As many as 10,000 FRBs may occur every day, but these high-energy surges were discovered only in 2007. They have been the topic of heated debate ever since, with even small steps towards identifying their origin stirring major excitement for astronomers.

One problem is that the momentary flashes are hard to pinpoint without knowing where to look.

Theories of their origins have ranged from catastrophic events like supernovas to neutron stars, which are super-dense stellar fragments formed after the gravitational collapse of a star. There are even more exotic explanations - discounted by astronomers - of extra-terrestrial signals.

The latest discovery, which was published in three papers in the journal Nature, was made by piecing together observations from space and ground-based telescopes. Both Stare2 and the Canadian Hydrogen Intensity Mapping Experiment spotted the flare and attributed it to the magnetar.

Later the same day, this region of the sky came into view of the extremely sensitive 500m Aperture Spherical Telescope in China.

Astronomers there were already keeping an eye on the magnetar, which had entered an "active phase" and was firing off X-ray and gamma ray bursts, according to Professor Bing Zhang, a researcher at the University of Nevada and part of the team reporting on the discovery.

AGENCE FRANCE-PRESSE

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A version of this article appeared in the print edition of The Straits Times on November 06, 2020, with the headline Radio burst spotted in our galaxy for first time. Subscribe