Hyperaccretion after the Blandford-Znajek Process: A New Model for GRBs with X-Ray Flares Observed in Early Afterglows

W. Lei, Ding-xiong Wang, Y. Zou, Lei Zhang
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引用次数: 19

Abstract

We propose a three-stage model with Blandford-Znajek (BZ) and hyperaccretion process to interpret the recent observations of early afterglows of Gamma-Ray Bursts (GRBs). In the first stage, the prompt GRB is powered by a rotating black hole (BH) invoking the BZ process. The second stage is a quiet stage, in which the BZ process is shut off, and the accretion onto the BH is depressed by the torque exerted by the magnetic coupling (MC) process. Part of the rotational energy transported by the MC process from the BH is stored in the disk as magnetic energy. In the third stage, the MC process is shut off when the magnetic energy in the disk accumulates and triggers magnetic instability. At this moment, the hyperaccretion process may set in, and the jet launched in this restarted central engine generates the observed X-ray flares. This model can account for the energies and timescales of GRBs with X-ray flares observed in early afterglows.
Blandford-Znajek过程后的超吸积:在早期余辉中观测到的带有x射线耀斑的伽马射线暴的新模型
我们提出了一个具有Blandford-Znajek (BZ)和超吸积过程的三阶段模型来解释最近观测到的伽玛射线暴(GRBs)早期余辉。在第一阶段,触发GRB是由一个旋转黑洞(BH)调用BZ过程驱动的。第二阶段是安静阶段,在此阶段BZ过程被关闭,磁耦合(MC)过程施加的扭矩抑制了对BH的吸积。MC过程从黑洞传递的部分旋转能量以磁能的形式存储在磁盘中。在第三阶段,当磁盘中的磁能积累并触发磁不稳定时,MC过程被关闭。在这个时刻,超吸积过程可能开始,在这个重新启动的中央引擎中发射的射流产生了观测到的x射线耀斑。该模型可以解释在早期余辉中观测到的带有x射线耀斑的伽马射线暴的能量和时间尺度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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