English

GRB 170817A: a short GRB seen off-axis

High Energy Astrophysical Phenomena 2018-05-02 v2

Abstract

The angular distribution of GRB jets is not yet clear. The observed luminosity of GRB 170817A is the lowest among all known short GRBs, which is best explained by the fact that our line of sight is outside of the jet opening angle, θobs\theta_{obs} >> θj\theta_j, where θobs\theta_{obs} is the angle between our line of sight and jet axis. Inferred by gravitational wave observations, as well as radio and X-ray afterglow modeling of GRB 170817A, it is likely that θobs\theta_{obs} \sim 20^{\circ} -- 28^{\circ}. In this work, we quantitatively consider two scenarios of angular energy distribution of GRB ejecta: top-hat jet, and structured jet with a power law index ss. For top-hat jet model, we get a large θj\theta_j (e.g., θj\theta_{j}>>1010^{\circ}), a rather high local (i.e., z<<0.01) short GRB rate \sim8--15×103\times10^3 Gpc3Gpc^{-3}yr1yr^{-1} (estimated 90\sim1850 Gpc3 Gpc^{-3}yr1yr^{-1} in Fong et al. 2015) and an extremely high Epeak,0E_{peak,0}(on-axis,rest-frame)>>7.5×104\times10^4keV(\sim500keV for typical short GRB). For structured jet model, we use θobs\theta_{obs} to give limits on ss and θj\theta_{j} for a typical on-axis luminosity short GRB (e.g., 104910^{49} erg s1^{-1}\sim105110^{51} erg s1^{-1}), and a low on-axis luminosity case (e.g., 104910^{49} erg s1^{-1}) gives more reasonable values of ss. A structured jet model is more feasible for GRB 170817A than a top-hat jet model, due to the rather high local short GRB rate and the extremely high on-axis Epeak,0E_{peak,0} almost rules out the top-hat jet model. GRB 170817A is likely a low on-axis luminosity GRB (104910^{49} erg s1^{-1}) with a structured jet.

Keywords

Cite

@article{arxiv.1710.05869,
  title  = {GRB 170817A: a short GRB seen off-axis},
  author = {Xin-Bo He and Pak-Hin Thomas Tam and Rong-Feng Shen},
  journal= {arXiv preprint arXiv:1710.05869},
  year   = {2018}
}

Comments

10 Pages, 3 Figures, 1 Table, RAA, in press

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