English

Short-duration GRB 250221A Afterglow Driven by Two-Component Jets from the merger of a compact star

High Energy Astrophysical Phenomena 2026-03-03 v2

Abstract

GRB 250221A is a short gamma-ray burst (GRB) at redshift z=0.768z=0.768, with a duration of 1.8 s and no extended emission in either Swift/Burst Alert Telescope or Konus-Wind bands. A remarkable rebrightening feature in both optical and X-ray bands was observed at \sim0.6 days after the burst trigger, but no supernova or kilonova signature was detected. The burst properties and empirical correlations or distributions (e.g., duration, spectral hardness, location in the Amati correlation, ε\varepsilon-value, fefff_{\rm eff} parameter, and physical offset) favor a compact binary merger origin. However, a dense circumburst medium with n80 cm3n\sim 80\rm~cm^{-3}, obtained by adopting the energy injection into a jet to interpret the late-time rebrightening is inconsistent with the compact binary merger origin. In this paper, we propose a two-component jet model to explain the multiwavelength afterglow observations of GRB 250221A, in which the relativistic narrow jet (θc3.8\rm \theta_{c} \sim 3.8^\circ) produces the prompt and the early decay afterglow emission, while the mildly relativistic wide jet (θw4.4\rm \theta_{w} \sim 4.4^\circ) dominates at later times, resulting in the observed rebrightening feature. If this is the case, one can obtain a lower medium density with n0.72 cm3n\sim 0.72\rm~cm^{-3} which is a little bit higher than that of short GRBs in merger environments, but falls into the reasonable and acceptable range. Finally, a possible kilonova emission is also discussed within the scenario of compact star merger origin of GRB 250221A.

Keywords

Cite

@article{arxiv.2602.21516,
  title  = {Short-duration GRB 250221A Afterglow Driven by Two-Component Jets from the merger of a compact star},
  author = {Xiao Tian and Hou-Jun Lü and Xiao-Xuan Liu and Xiao-Fei Dong and Jia Ren and Wen-Long Zhang and En-Wei Liang},
  journal= {arXiv preprint arXiv:2602.21516},
  year   = {2026}
}

Comments

14 pages, 5 figures, and 1 table, matched with the published verison