LOFAR detectability of prompt low-frequency radio emission during gamma-ray burst X-ray flares
arXiv:2004.11209 · doi:10.1093/mnras/staa1168
Abstract
The prompt emission in long gamma-ray bursts arises from within relativistic outflows created during the collapse of massive stars, and the mechanism by which radiation is produced may be either magnetically- or matter-dominated. In this work we suggest an observational test of a magnetically-dominated Poynting flux model that predicts both gamma-ray and low-frequency radio pulses. A common feature among early light curves of long gamma-ray bursts are X-ray flares, which have been shown to arise from sites internal to the jet. Ascribing these events to the prompt emission, we take an established Swift XRT flare sample and apply a magnetically-dominated wind model to make predictions for the timing and flux density of corresponding radio pulses in the ~100-200 MHz band observable with radio facilities such as LOFAR. We find that 44 per cent of the X-ray flares studied would have had detectable radio emission under this model, for typical sensitivities reached using LOFAR's rapid response mode and assuming negligible absorption and scattering effects in the interstellar and intergalactic medium. We estimate the rate of Swift gamma-ray bursts displaying X-ray flares with detectable radio pulses, accessible to LOFAR, of order seven per year. We determine that LOFAR triggered observations can play a key role in establishing the long debated mechanism responsible for gamma-ray burst prompt emission.
7 pages, 4 figures, accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (15)
- A bright millisecond radio burst of extragalactic origin
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Temporal Properties and Morphology
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Spectral Properties and Energetics
- GRB 130925A: an ultra-long Gamma Ray Burst with a dust-echo afterglow, and implications for the origin of the ultra-long GRBs
- Internal Energy Dissipation of Gamma-Ray Bursts Observed with Swift: Precursors, Prompt Gamma-rays, Extended emission and Late X-ray Flares
- The Deep and Transient Universe in the SVOM Era: New Challenges and Opportunities - Scientific prospects of the SVOM mission
- GRB 120711A: an intense INTEGRAL burst with long-lasting soft gamma-ray emission and a powerful optical flash
- A common stochastic process rules gamma-ray burst prompt emission and X-ray flares
- The Arcminute Microkelvin Imager Catalogue of Gamma-ray Burst afterglows at 15.7 GHz
- Swift and Fermi observations of X-ray flares: the case of Late Internal Shock
- Strategies for Finding Prompt Radio Counterparts to Gravitational Wave Transients with the Murchison Widefield Array
- LOFAR early-time search for coherent radio emission from GRB 180706A
- Calculating transient rates from surveys
- A VOEvent based automatic trigger system for the Murchison Widefield Array
Cited by in corpus (4)
- LOFAR early-time search for coherent radio emission from Short GRB 181123B
- High time resolution search for prompt radio emission from the long GRB 210419A with the Murchison Widefield Array
- A LOFAR prompt search for radio emission accompanying X-ray flares in GRB 210112A
- A Search for Low-frequency Radio Pulses from Long Gamma-ray Bursts with the Murchison Widefield Array