English

Constraining External Reverse Shock Physics of GRBs from ROTSE-III Limits

High Energy Astrophysical Phenomena 2017-12-13 v1

Abstract

Assuming that the early optical emission is dominated by the external reverse shock (RS) in the standard model of gamma-ray bursts (GRBs), we intend to constrain RS models with the initial Lorentz factor Γ0\Gamma_0 of the outflows based on the ROTSE-III observations. We consider two cases of the RS behavior: the relativistic shock and the non-relativistic shock. For homogeneous interstellar medium (ISM) and wind circum-burst environment, the constraints can be achieved by the fact that the peak flux FνF_{\rm \nu} at the RS crossing time should be lower than the observed upper limit Fν,limitF_{\rm \nu,limit}. We consider the different spectral regimes that the observed optical frequency νopt\nu_{\rm opt} may locate in, which are divided by the orders for the minimum synchrotron frequency νm\nu_{\rm m} and the cooling frequency νc\nu_{\rm c}. {\bf Considering the homogeneous and wind environment around GRBs, we find that the relativistic RS case can be constrained by the (upper and lower) limits of Γ0\Gamma_0 in a large range from about hundreds to thousands for 36 GRBs reported by ROTSE-III. The constraints on the non-relativistic RS case are achieved with limits of Γ0\Gamma_0 for 26 bursts ranging from 30\sim 30 to 350\sim 350.} The lower limits of Γ0\Gamma_0 achieved for the relativistic RS model is disfavored based on the previously discovered correlation between the initial Lorentz factor Γ0\Gamma_0 and the isotropic gamma-ray energy Eγ,isoE_{\rm \gamma, iso} released in prompt phase.

Keywords

Cite

@article{arxiv.1711.02264,
  title  = {Constraining External Reverse Shock Physics of GRBs from ROTSE-III Limits},
  author = {Xiao-Hong Cui and Yuan-Chuan Zou and Jun-Jie Wei and Wei-Kang Zheng and Xue-Feng Wu},
  journal= {arXiv preprint arXiv:1711.02264},
  year   = {2017}
}

Comments

11 pages, 5 tables, 4 figures, MNRAS in press

R2 v1 2026-06-22T22:38:11.456Z