论文标题

轴对称黑洞磁层的二维粒子模拟

Two-dimensional Particle-in-Cell simulations of axisymmetric black hole magnetospheres

论文作者

Hirotani, Kouichi, Krasnopolsky, Ruben, Shang, Hsien, Nishikawa, Ken-ichi, Watson, Michael

论文摘要

我们研究了轴对称磁层周围绕快速旋转的恒星质量黑洞的时间演变,并采用了二维粒子中的粒子模拟方案。采用均匀的配对产生,并假设质量吸积率远低于爱丁顿的限制,我们发现黑洞的旋转能量优先从中纬度中提取,并且这种外向的能量通量显示出持续的增强功能,持续大约160个动态时间尺度。证明磁性水力动力学近似在这种磁性主导的磁层中不能证明是合理的,因为欧姆的定律完全分解,并且因为电荷分离的电子质体等离子体是高度非中性的。关于相对论喷气机的准则给出了一个含义。

We investigate the temporal evolution of an axisymmetric magnetosphere around a rapidly rotating, stellar-mass black hole, applying a two-dimensional particle-in-cell simulation scheme. Adopting a homogeneous pair production, and assuming that the mass accretion rate is much less than the Eddington limit, we find that the black hole's rotational energy is preferentially extracted from the middle latitudes, and that this outward energy flux exhibits an enhancement that lasts approximately 160 dynamical time scales. It is demonstrated that the magnetohydrodynamic approximations cannot be justified in such a magnetically-dominated magnetosphere, because the Ohm's law completely breaks down, and because the charge-separated electron-positron plasmas are highly non-neutral. An implication is given regarding the collimation of relativistic jets.

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