In February 2024, scientists on Earth detected a strong radio blast from outer area. In search of to find the place it had come from, they traced the temporary flash of power again to its extraterrestrial supply—and found one thing surprising.
Scientists led by Northwestern College and McGill College have traced a quick radio burst (FRB) to the perimeters of an historic elliptical galaxy. Scientists had beforehand thought that these fast radio blasts, which generate extra power in a single flare than our Solar generates in a complete 12 months, are solely produced by younger galaxies that steadily churn out new stars. The current investigations, nonetheless, detailed in two sister studies printed on January twenty first in The Astrophysical Journal Letters, are prompting astronomers to rethink the potential range of FRB sources.
Dubbed FRB 20240209A, the February 2024 FRB wasn’t only a one-and-done. Between February and July 2024, the identical supply flared 21 occasions.
“The prevailing principle is that FRBs come from magnetars shaped via core-collapse supernovae,” Tarraneh Eftekhari of Northwestern College, who participated in each research, stated in a college statement. Magnetars are neutron stars with very highly effective magnetic fields—and neutron stars are extraordinarily small and dense celestial objects thought to type within the wake of some massive stars’ explosive deaths, that’s, supernovae.
“That doesn’t seem like the case right here,” Eftekhari continued. “Whereas younger, huge stars finish their lives as core-collapse supernovae, we don’t see any proof of younger stars on this galaxy. Due to this new discovery, an image is rising that reveals not all FRBs come from younger stars. Possibly there’s a subpopulation of FRBs which might be related to older methods.”
The previous galaxy in query is 11.3 billion years previous, and a pair of billion lightyears away from us. Utilizing laptop simulations, Eftekhari and her colleagues found that the galaxy is extraordinarily vivid, and 100 billion occasions extra huge than our Solar.
“It appears to be probably the most huge FRB host galaxy so far,” Eftekhari stated. “It’s amongst among the most huge galaxies on the market.” Not solely did the bizarre FRB originate from an previous galaxy, it additionally got here from that galaxy’s edge—particularly, 130,000 lightyears from its middle.
“Among the many FRB inhabitants, this FRB is positioned the [farthest] from the middle of its host galaxy,” stated Vishwangi Shah of McGill, who participated in each research. “That is each shocking and thrilling, as FRBs are anticipated to originate inside galaxies, typically in star-forming areas. The situation of this FRB to date exterior its host galaxy raises questions as to how such energetic occasions can happen in areas the place no new stars are forming.”
However FRB 20240209A just isn’t the primary FRB to be detected far-off from areas of energetic star formation—it’s the second. In 2022, astronomers traced M81 FRB, which is positioned 12 million mild years from Earth, to a cluster of stars on the sting of galaxy Messier 81.
FRB 20240209A “could possibly be a twin of the M81 occasion [M81 FRB]. It’s removed from its dwelling galaxy (far-off from the place any stars are being born), and the inhabitants of stars in its dwelling galaxy is extraordinarily previous. It’s had its hey-day and is now coasting into retirement,” stated Wen-fai Fong of Northwestern College, who participated in each research. “On the identical time, any such previous setting is making us rethink our normal FRB progenitor fashions and turning to extra unique formation channels, which is thrilling.”
One of many research means that, like M81 FRB, the brand new FRB may need additionally originated from a cluster of stars, referred to as a globular cluster.
“A globular cluster origin for this repeating FRB is the probably situation to clarify why this FRB is positioned exterior its host galaxy,” Shah defined. “We have no idea for a reality if there’s a globular cluster current on the FRB place and have submitted a proposal to make use of the James Webb Area Telescope for follow-up observations of the FRB location. If sure, it will make this FRB solely the second FRB recognized to reside in a globular cluster. If not, we must think about different unique situations for the FRB’s origin.”
In different phrases: again to the drafting board!
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