English

Cosmic Evolution of Long Gamma-Ray Burst Luminosity

High Energy Astrophysical Phenomena 2016-04-06 v1

Abstract

The cosmic evolution of gamma-ray burst (GRB) luminosity is essential for revealing the GRB physics and for using GRBs as cosmological probes. We investigate the luminosity evolution of long GRBs with a large sample of 258 {\em Swift}/BAT GRBs. Parameterized the peak luminosity of individual GRBs evolves as Lp(1+z)kL_{\rm p}\propto{\rm }(1+z)^{k}, we get k=1.49±0.19k=1.49\pm0.19 using the non-parametric τ\tau statistics method without considering observational biases of GRB trigger and redshift measurement. By modeling these biases with the observed peak flux and characterizing the peak luminosity function of long GRBs as a smoothly broken power-law with a break that evolves as Lb(1+z)kbL_{\rm b}\propto (1+z)^{k_{\rm b}}, we obtain kb=1.140.47+0.99k_{\rm b}=1.14^{+0.99}_{-0.47} through simulations based on assumption that the long GRB rate follows the star formation rate (SFR) incorporating with cosmic metallicity history. The derived kk and kbk_b values are systematically smaller than that reported in previous papers. By removing the observational biases of the GRB trigger and redshift measurement based on our simulation analysis, we generate mock {\em complete} samples of 258 and 1000 GRBs to examine how these biases affects on the τ\tau statistics method. We get k=0.94±0.14k=0.94\pm 0.14 and k=0.80±0.09k=0.80\pm 0.09 for the two samples, indicating that these observational biases may lead to overestimate the kk value. With the large uncertain of kbk_b derived from our simulation analysis, one even cannot convincingly argue a robust evolution feature of the GRB luminosity.

Keywords

Cite

@article{arxiv.1601.07645,
  title  = {Cosmic Evolution of Long Gamma-Ray Burst Luminosity},
  author = {Can-Min Deng and Xiang-Gao Wang and Bei-Bei Guo and Rui-Jing Lu and Yuan-Zhu Wang and Jun-Jie Wei and Xue-Feng Wu and En-Wei Liang},
  journal= {arXiv preprint arXiv:1601.07645},
  year   = {2016}
}

Comments

37 pages, 6 figures, accepted for publication in ApJ