English

Could an X-ray Flare after GRB 170817A Originate from a Post-merger Slim Accretion Disc?

High Energy Astrophysical Phenomena 2019-04-10 v1

Abstract

GRB 170817A, detected by Fermi-GBM 1.7\,s after the merger of a neutron star (NS) binary, provides the first direct evidence for a link between such a merger and a short-duration gamma-ray burst. The X-ray observations after GRB 170817A indicate a possible X-ray flare with a peak luminosity Lpeak2×1039ergs1L_{\rm peak} \sim 2\times 10^{39}\,{\rm erg\,s}^{-1} near day 156. Here we show that this X-ray flare may be understood based on a slim disc around a compact object. On the one hand, there exists the maximal accretion rate M˙max\dot M_{\rm max} for the slim disc, above which an optically thick outflow is significant and radiation from the disc is obscured. Based on the energy balance analysis, we find that M˙max\dot M_{\rm max} is in the range of 4M˙Edd\sim 4\dot M_{\rm Edd} and 21M˙Edd\sim 21\dot M_{\rm Edd} when the angular velocity of the slim disc is between (1/5)1/2ΩK\rm (1/5)^{1/2}\Omega_K and ΩK\rm \Omega_K (where M˙Edd\dot M_{\rm Edd} is the Eddington accretion rate and ΩK\Omega_K is the Keplerian angular velocity). With M˙max\dot M_{\rm max}, the slim disc can provide a luminosity Lpeak\sim L_{\rm peak} for a compact object of 2.5M\sun2.5 M_{\sun}. On the other hand, if the merger of two NSs forms a typical neutrino-dominated accretion disc whose accretion rate M˙\dot M follows a power-law decline with an index 1.8-1.8 , then the system must pass through the outflow regime and enter the slim disc in 11355\sim 11-355 days. These results imply that a post-merger slim accretion disc could account for the observed late-time LpeakL_{\rm peak}.

Keywords

Cite

@article{arxiv.1903.07878,
  title  = {Could an X-ray Flare after GRB 170817A Originate from a Post-merger Slim Accretion Disc?},
  author = {Yi-Qing Lin and Zi-Gao Dai and Wei-Min Gu},
  journal= {arXiv preprint arXiv:1903.07878},
  year   = {2019}
}

Comments

5 pages, 2 figures,accepted for publication in MNRAS