English

A Comprehensive Study of Gamma-Ray Burst Optical Emission: I. Flares and Early Shallow Decay Component

High Energy Astrophysical Phenomena 2015-06-04 v2

Abstract

Well-sampled optical lightcurves of 146 gamma-ray bursts (GRBs) are compiled from the literature. By empirical fitting we identify eight possible emission components and summarize the results in a "synthetic" lightcurve. Both optical flare and early shallow-decay components are likely related to long-term central engine activities. We focus on their statistical properties in this paper. Twenty-four optical flares are obtained from 19 GRBs. The isotropic R-band energy is smaller than 1% of Eγ,isoE_{\gamma, \rm iso}. The relation between isotropic luminosities of the flares and gamma-rays follows LR,isoFLγ,iso1.11±0.27L^{\rm F}_{\rm R, iso}\propto L_{{\gamma}, \rm iso}^{1.11\pm 0.27}. Later flares tend to be wider and dimmer, i.e., wFtpF/2w^{\rm F}\sim t^{\rm F}_{\rm p}/2 and LR,isoF[tpF/(1+z)]1.15±0.15L^{\rm F}_{\rm R, iso}\propto [t^{\rm F}_{\rm p}/(1+z)]^{-1.15\pm0.15}. The detection probability of the optical flares is much smaller than that of X-ray flares. An optical shallow decay segment is observed in 39 GRBs. The relation between the break time and break luminosity is a power-law, with an index of 0.78±0.08-0.78\pm 0.08, similar to that derived from X-ray flares. The X-ray and optical breaks are usually chromatic, but a tentative correlation is found. We suggest that similar to the prompt optical emission that tracks γ\gamma-rays, the optical flares are also related to the erratic behavior of the central engine. The shallow decay component is likely related to a long-lasting spinning-down central engine or piling up of flare materials onto the blastwave. Mixing of different emission components may be the reason of the diverse chromatic afterglow behaviors.

Keywords

Cite

@article{arxiv.1203.2332,
  title  = {A Comprehensive Study of Gamma-Ray Burst Optical Emission: I. Flares and Early Shallow Decay Component},
  author = {Liang Li and En-Wei Liang and Qing-Wen Tang and Jie-Min Chen and Shao-Qiang Xi and Hou-Jun LV and He Gao and Bing Zhang and Jin Zhang and Shuang-Xi Yi and Rui-Jing Lu and Lian-Zhong LV and Jian-Yan Wei},
  journal= {arXiv preprint arXiv:1203.2332},
  year   = {2015}
}

Comments

43 pages, 13 figures, 3 tables, accepted for publication in ApJ