Effects of Self-gravity of the Accretion Disk Around Rapidly Rotating Black Hole in Long Gamma Ray Bursts

Ishika Palit, A. Janiuk, P. Suková
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Abstract

We prescribe a method to study the effects of self-gravity of accretion disk around a black hole associated with long Gamma Ray Bursts (GRBs) in an evolving background Kerr metric. This is an extension to our previous work where we presented possible constraints for the final masses and spins of these astrophysical black holes. Incorporating the self-force of the accreting cloud around the black hole is a very important aspect due to the transient nature of the event, in which a huge amount of mass is accreted and changes the fundamental black hole parameters i.e. its mass and spin, during the process. Understanding of the GRBs engine is important because they are possible sources of high-energy particles and gravitational waves as most of the energy released from the dynamical evolution is in the form of gravitational radiation. Here, we describe the analytical framework we developed to employ in our numerical model. The numerical studies are planned for the future work.
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长伽马射线暴中快速旋转黑洞周围吸积盘的自引力效应
在不断变化的背景Kerr度量中,我们提出了一种方法来研究与长伽马射线暴(GRBs)相关的黑洞周围吸积盘自引力的影响。这是我们之前工作的延伸,我们提出了这些天体物理黑洞的最终质量和自旋的可能约束。考虑到黑洞周围吸积云的自作用力是一个非常重要的方面,因为该事件具有瞬态性质,在此过程中,大量质量被吸积并改变了黑洞的基本参数,即质量和自旋。了解GRBs引擎很重要,因为它们可能是高能粒子和引力波的来源,因为动态演化释放的大部分能量是以引力辐射的形式释放的。在这里,我们描述了我们开发的用于我们的数值模型的分析框架。数值研究是为今后的工作做准备。
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