English

Gamma-Ray Burst detection prospects for next generation ground-based VHE facilities

Instrumentation and Methods for Astrophysics 2021-09-29 v2 High Energy Astrophysical Phenomena

Abstract

Gamma-ray Bursts (GRB) were discovered by satellite-based detectors as powerful sources of transient γ\gamma-ray emission. The Fermi satellite detected an increasing number of these events with its dedicated Gamma-ray Burst Monitor (GBM), some of which were associated with high energy photons (E>10GeV)(E > 10\, \mathrm{GeV}), by the Large Area Telescope (LAT). More recently, follow-up observations by Cherenkov telescopes detected very high energy emission (E>100GeV)(E > 100\, \mathrm{GeV}) from GRBs, opening up a new observational window with implications on the interpretation of their central engines and on the propagation of very energetic photons across the Universe. Here, we use the data published in the 2nd Fermi-LAT Gamma Ray Burst Catalogue to characterise the duration, luminosity, redshift and light curve of the high energy GRB emission. We extrapolate these properties to the very high energy domain, comparing the results with available observations and with the potential of future instruments. We use observed and simulated GRB populations to estimate the chances of detection with wide-field ground-based γ\gamma-ray instruments. Our analysis aims to evaluate the opportunities of the Southern Wide-field-of-view Gamma-ray Observatory (SWGO), to be installed in the Southern Hemisphere, to complement CTA. We show that a low-energy observing threshold (Elow<200GeV)(E_{low} < 200\, \mathrm{GeV}), with good point source sensitivity (Flim1011ergcm2s1(F_{lim} \approx 10^{-11}\, \mathrm{erg\, cm^{-2}\, s^{-1}} in 1yr)1\, \mathrm{yr}), are optimal requirements to work as a GRB trigger facility and to probe the burst spectral properties down to time scales as short as 10s10\, \mathrm{s}, accessing a time domain that will not be available to IACT instruments.

Keywords

Cite

@article{arxiv.2109.06676,
  title  = {Gamma-Ray Burst detection prospects for next generation ground-based VHE facilities},
  author = {G. La Mura and U. Barres de Almeida and R. Conceição and A. De Angelis and F. Longo and M. Pimenta and E. Prandini and E. Ruiz-Velasco and B. Tomé},
  journal= {arXiv preprint arXiv:2109.06676},
  year   = {2021}
}

Comments

10 pages, 4 figures, published on MNRAS

R2 v1 2026-06-24T05:57:17.303Z