Prompt gamma-ray emission of GRB 170817A associated with GW 170817: a consistent picture

被引:5
作者
Ziaeepour, Houri [1 ,2 ]
机构
[1] Univ Franche Comte, Observ Besancon, CNRS, Inst UTINAM,UMR 6213, 41 Bis Ave Observ,BP 1615, F-25010 Besancon, France
[2] Mullard Space Sci Lab, Holmbury St Mary, Dorking RH5 6NT, Surrey, England
关键词
gamma-ray burst; gravitational wave; binary neutron star; merger; relativistic shock; NEUTRON-STAR MERGERS; X-RAY; ELECTROMAGNETIC COUNTERPARTS; NUMERICAL-MODELS; STRUCTURED JETS; BURSTS; KILONOVA; ACCELERATION; ENERGY; SIMULATIONS;
D O I
10.1093/mnras/sty1246
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The short GRB 170817A associated with the first detection of gravitation waves from a binary neutron star (BNS) merger was in many ways unusual. Possible explanations are emission from a cocoon or cocoon break out, off-axis view of a structured or uniform jet, and on-axis ultra-relativistic jet with reduced density and Lorentz factor. Here, we use a phenomenological model of shock evolution and synchrotron/self-Compton emission to simulate the prompt emission of GRB 170817A and to test above proposals. We find that synchrotron emission from a mildly relativistic cocoon with a Lorentz factor of 2-3, as considered in the literature, generates a too soft, too long, and too bright prompt emission. Off-axis view of a structured jet with a Lorentz factor of about 10 can reproduce observations, but needs a very efficient transfer of kinetic energy to electrons in internal shocks, which is disfavoured by particle in cell simulations. We also comment on cocoon breakout as a mechanism for generation of the prompt gamma-ray. A relativistic jet with a Lorentz factor of about 100 and a density lower than typical short GRBs seems to be the most plausible model and we conclude that GRB 170817A was intrinsically faint. Based on this result and findings of relativistic magnetohydrodynamics simulations of BNS merger in the literature we discuss physical and astronomical conditions, which may lead to such faint short GRBs. We identify small mass difference of progenitor neutron stars, their old age and reduced magnetic field, and anti-alignment of spin-orbit angular momentum induced by gravitational disturbances during the lifetime of the BNS as causes for the faintness of GRB 170817A. We predict that BNS mergers at lower redshifts generate on average fainter GRBs.
引用
收藏
页码:3233 / 3252
页数:20
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