A Search for Low-frequency Radio Pulses from Long Gamma-ray Bursts with the Murchison Widefield Array
arXiv:2502.11545 · doi:10.3847/1538-4357/adb71e
Abstract
It has been proposed that coherent radio emission could be emitted during or shortly following a gamma-ray burst (GRB). Here we present a low-frequency ( MHz) search for radio pulses associated with long-duration GRBs using the Murchison Widefield Array (MWA). The MWA, with its rapid-response system, is capable of performing GRB follow-up observations within approximately seconds. Our single pulse search, with temporal and spectral resolutions of s and kHz, covers dispersion measures up to pc cm. Two single pulse candidates are identified with significance greater than , surviving a friends-of-friends analysis. We rule out random fluctuations as their origin at a confidence level of (). We caution that radio frequency interference from digital TV (DTV) is most likely the origin of these pulses since the DTV frequency bands almost cover the entire observing frequency band. If they are astrophysical signals, we estimate the peak flux densities for our pulse candidates of Jy and Jy, with corresponding fluences of Jy ms and Jy ms, respectively. Based on these observations and the assumption of a magnetar origin for the pulse, we constrain the radio emission efficiency as for both candidates, which is consistent with pulsar observations. Our results highlight the promising potential of new-generation radio telescopes like the MWA to probe the central engines of GRBs.
19 Pages, 6 figures, 5 tables. Accepted for publication in ApJ