English

Gamma-ray burst progenitors revisited

High Energy Astrophysical Phenomena 2026-07-28 v1

Abstract

Recently, several long-duration gamma-ray bursts (GRBs) associated with kilonovae have cast doubt on the traditional, dichotomous mapping between gamma-ray duration and progenitor system. Here, we investigate the rates and properties of bursts which appear to cross this dichotomy using a sample of GRBs for which progenitor constraints are possible. We first build a sample of known Swift-detected GRBs at z<0.3, finding 8 short- and 21 long-duration GRBs. Of these long GRBs, we find 9 bursts with deep limits on supernova emission, evidence for kilonova emission, or association with a quiescent galaxy (31% ±\pm 9% of all GRBs at z<0.3), implying that a significant fraction of nearby long GRBs likely do not come from massive stars. At z<0.3, no short GRB has an observed supernova counterpart. We find comparable numbers when expanding to z<0.5 and other gamma-ray telescopes, though we obtain a decreased fraction of bursts with robust constraints on a progenitor. We further find that the long GRBs with no associated supernovae possess on-average fainter afterglows and lie in less star-forming host galaxies than those with supernovae, supporting that these events may originate in compact object mergers. We estimate approximate volumetric rates, finding similar (on-axis) rates for short GRBs and supernova-less long GRBs of 0.52.5\sim 0.5-2.5 Gpc3^{-3} yr1^{-1}, although a search for possible low-redshift hosts of the complete Swift catalog suggests that our sample may be \sim50% complete. If supernova-less long GRBs arise from compact object mergers, this implies that \sim 30-70% of all z<0.3 Swift long GRBs may arise from mergers and that the z<0.3z<0.3 rates of mergers from long and short GRBs are comparable. These findings hold substantial implications for gravitational-wave coincidence and heavy element enrichment.

Keywords

Cite

@article{arxiv.2607.26133,
  title  = {Gamma-ray burst progenitors revisited},
  author = {Andrew J. Levan and Jillian C. Rastinejad and Helena-Margaret S. Grabham and Daniele B. Malesani and Nial R. Tanvir and Eric Burns and Benjamin P. Gompertz and Gavin P. Lamb and Ashley A. Chrimes and Peter G. Jonker and Om Salafia and Nikhil Sarin and Ilya Mandel and Antonio Martin-Carrillo},
  journal= {arXiv preprint arXiv:2607.26133},
  year   = {2026}
}

Comments

Submitted to MNRAS. 28 pages, 13 figures, 6 tables