The short gamma-ray burst population in a quasi-universal jet scenario
O. S. Salafia, M. E. Ravasio, G. Ghirlanda, I. Mandel

TL;DR
This paper models the population of short gamma-ray bursts using a quasi-universal jet scenario, fitting multiple observational samples with a Bayesian approach to infer jet structure, luminosity distribution, and event rates.
Contribution
It introduces a Bayesian hierarchical model for SGRB populations that accounts for jet structure and luminosity variations, fitting multiple datasets simultaneously.
Findings
Narrow jet core with half-opening angle ~2.1 degrees.
Luminosity distribution follows a power law with index ~3.2.
Estimated local SGRB rate density aligns with BNS merger rates from GW observations.
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 , but share a universal angular luminosity profile as a function of the viewing angle . 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 deg (90\% credible intervals…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Pulsars and Gravitational Waves Research
