English

The short gamma-ray burst population in a quasi-universal jet scenario

High Energy Astrophysical Phenomena 2023-12-13 v1 General Relativity and Quantum Cosmology

Abstract

We describe a model of the short gamma-ray burst (SGRB) population under a `quasi-universal jet' scenario in which jets can differ in their on-axis peak prompt emission luminosity LcL_c, but share a universal angular luminosity profile (θv)=L(θv)/Lc\ell(\theta_v)=L(\theta_v)/L_c as a function of the viewing angle θv\theta_v. The model is fitted, through a Bayesian hierarchical approach inspired by gravitational wave (GW) population analyses, to 3 observed SGRB samples simultaneously: the Fermi/GBM sample of SGRBs with spectral information in the catalogue (367 events); a flux-complete sample of 16 Swift/BAT SGRBs also detected by GBM, with a measured redshift; and a sample of SGRBs with a binary neutron star (BNS) merger counterpart, which only includes GRB~170817A at present. The results favour a narrow jet core with half-opening angle θc=2.11.4+2.4\theta_c=2.1_{-1.4}^{+2.4} deg (90\% credible intervals from our fiducial `full sample' analysis) whose on-axis peak luminosity is distributed as p(Lc)LcAp(L_c) \propto L_c^{-A} with A=3.20.4+0.7A=3.2_{-0.4}^{+0.7} above a minimum luminosity Lc=52+11×1051L_c^\star = 5_{-2}^{+11}\times 10^{51} erg s1^{-1}. For θv>θc\theta_v>\theta_c, the luminosity scales as a power law θvαL\ell\propto \theta_v^{-\alpha_L} with αL=4.71.4+1.2\alpha_L=4.7_{-1.4}^{+1.2}, with no evidence for a break. While the model implies an intrinsic `Yonetoku' correlation between LL and the peak photon energy EpE_p, its slope is somewhat shallower EpL0.4±0.2E_p\propto L^{0.4\pm 0.2} than the apparent one, and the normalization is offset towards larger EpE_p, due to selection effects. The implied local rate density of SGRBs is between about 100 up to several thousands of events per Gpc3^{3} yr, in line with the BNS merger rate density inferred from GW observations. Based on the model, we predict 0.2 to 1.3 joint GW+SGRB detections per year by the Advanced GW detector network and Fermi/GBM during the O4 observing run.

Keywords

Cite

@article{arxiv.2306.15488,
  title  = {The short gamma-ray burst population in a quasi-universal jet scenario},
  author = {O. S. Salafia and M. E. Ravasio and G. Ghirlanda and I. Mandel},
  journal= {arXiv preprint arXiv:2306.15488},
  year   = {2023}
}

Comments

30 pages, 23 figures, submitted to A&A. Comments are welcome!