English

GRB 221009A: An ordinary nearby GRB with extraordinary observational properties

High Energy Astrophysical Phenomena 2023-05-31 v1

Abstract

The gamma-ray burst GRB 221009A, known as the ``brightest-of-all-time" (BOAT), is the closest energetic burst detected so far, with an energy of Eγ,iso1055E_{\gamma,\rm iso} \sim 10^{55} ergs. This study aims to assess its compatibility with known GRB energy and luminosity distributions. Our analysis indicates that the energy/luminosity function of GRBs is consistent across various redshift intervals, and that the inclusion of GRB 221009A does not significantly impact the function at low redshifts. Additionally, our evaluation of the best-fitting result of the entire GRB sample suggests that the expected number of GRBs with energy greater than 105510^{55} ergs at a low redshift is 0.2, so that the emergence of GRB 221009A is consistent with expected energy/luminosity functions within 2σ\sim 2\sigma Poisson fluctuation error, still adhering to the principles of small number statistics. Furthermore, we find that GRB 221009A and other energetic bursts, defined as Eγ,iso1054ergsE_{\gamma,\rm iso} \gtrsim10^{54} {\rm ergs}, exhibit no significant differences in terms of distributions of T90T_{90}, minimum timescale, Amati relation, Eγ,isoE_{\rm \gamma,iso}-EX,isoE_{\rm X,iso} relation, Lγ,isoΓ0L_{\gamma,\rm iso}-\Gamma_0 relation, Eγ,isoΓ0E_{\gamma,\rm iso}-\Gamma_0 relation, Lγ,isoEp,iΓ0L_{\gamma,\rm iso}-E_{\rm p,i}-\Gamma_0 relation, and host galaxy properties, compared to normal long GRBs. This suggests that energetic GRBs (including GRB 221009A) and other long GRBs likely have similar progenitor systems and undergo similar energy dissipation and radiation processes. The generation of energetic GRBs may be due to more extreme central engine properties or, more likely, a rarer viewing configuration of a quasi-universal structured jet.

Keywords

Cite

@article{arxiv.2303.10804,
  title  = {GRB 221009A: An ordinary nearby GRB with extraordinary observational properties},
  author = {Lin Lan and He Gao and An Li and Shuo Xiao and Shunke Ai and Zong-Kai Peng and Long Li and Chen-Yu Wang and Nan Xu and Shijie Lin and Wei-Hua Lei and Bing Zhang and Yan-Qiu Zhang and Chao Zheng and Jia-Cong Liu and Wang-Chen Xue and Chen-Wei Wang and Wen-Jun Tan and Shao-Lin Xiong},
  journal= {arXiv preprint arXiv:2303.10804},
  year   = {2023}
}

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Submitted to AAS journal