English

A Tight Three-parameter Correlation and Related Classification on Gamma-Ray Bursts

High Energy Astrophysical Phenomena 2022-03-02 v2

Abstract

Gamma-ray bursts (GRBs) are widely believed to be from massive collapsars and/or compact binary mergers, which accordingly, would generate long and short GRBs, respectively. The details on this classification scheme have been in constant debate given more and more observational data available to us. In this work, we apply a series of data mining methods to studying the potential classification information contained in the prompt emission of GRBs detected by the Fermi Gamma-ray Burst Monitor. A tight global correlation is found between fluence (ff), peak flux (FF) and prompt duration (T90T_{90}) which takes the form of logf=0.75logT90+0.92logF7.14 \log {\it f}= 0.75 \log T_{90} +0.92 \log F -7.14. Based on this correlation, we can define a new parameter L=1.66logT90+0.84logf0.46logF+3.24L = 1.66\log T_{90} + 0.84 \log {\it f} - 0.46 \log F + 3.24 by linear discriminant analysis that would distinguish between long and short GRBs with much less ambiguity than T90T_{90}. We also discussed the three subclasses scheme of GRB classification derived from clusters analysis based on a Gaussian mixture model, and suggest that, besides SGRBs, LGRBs may be divided into long-bright gamma-ray bursts (LBGRBs) and long-faint gamma-ray bursts (LFGRBs), LBGRBs have statistical higher ff and FF than LFGRBs; further statistical analysis found that LBGRBs also have higher number of GRB pulses than LFGRBs.

Keywords

Cite

@article{arxiv.2201.10861,
  title  = {A Tight Three-parameter Correlation and Related Classification on Gamma-Ray Bursts},
  author = {Shuai Zhang and Lang Shao and Bin-Bin Zhang and Jin-Hang Zou and Hai-Yuan Sun and Yu-Jie Yao and Lin-Lin Li},
  journal= {arXiv preprint arXiv:2201.10861},
  year   = {2022}
}

Comments

12 pages, 8 figures. Accepted for Publication in ApJ

R2 v1 2026-06-24T09:03:27.292Z