论文标题

在黑洞周围排出的麦角对的多维模拟

Multi-dimensional simulations of ergospheric pair discharges around black holes

论文作者

Crinquand, Benjamin, Cerutti, Benoît, Philippov, Alexander, Parfrey, Kyle, Dubus, Guillaume

论文摘要

众所周知,黑洞会发射强大的相对论喷气机并发出高度可变的伽玛辐射。这些喷气机如何加载血浆仍然知之甚少。人们认为火花隙可以驱动颗粒加速并在黑孔磁层中成对创建。在本文中,我们对单极黑孔磁层进行了2D轴对称的通用粒子层模拟,并对逆康普顿散射和成对产生进行了现实处理。我们发现,磁层可以自以为是的血浆,并激活Blandford-Znajek机制。高度时间依赖的火花隙在内部光表面附近打开,将血浆注入磁层中。这些结果可能解释了在活性银河核中观察到的高能活性,并解释了射流底部血浆的起源。

Black holes are known to launch powerful relativistic jets and emit highly variable gamma radiation. How these jets are loaded with plasma remains poorly understood. Spark gaps are thought to drive particle acceleration and pair creation in the black-hole magnetosphere. In this paper, we perform 2D axisymmetric general-relativistic particle-in-cell simulations of a monopole black-hole magnetosphere with a realistic treatment of inverse Compton scattering and pair production. We find that the magnetosphere can self-consistently fill itself with plasma and activate the Blandford-Znajek mechanism. A highly time-dependent spark gap opens near the inner light surface which injects pair plasma into the magnetosphere. These results may account for the high-energy activity observed in active galactic nuclei and explain the origin of plasma at the base of the jet.

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