论文标题

轴对称黑洞磁层的二维粒子中粒子模拟:Blandford-Znajek通量的角度依赖性

Two-dimensional Particle-in-Cell simulations of axisymmetric black hole magnetospheres: angular dependence of the Blandford-Znajek flux

论文作者

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

论文摘要

我们通过应用我们的二维粒子中的模拟代码来检查轴对称磁层围绕快速旋转黑洞(BHS)的临时演变。假设恒星质量BH,我们发现所创造的对无法沿磁场筛选电场,前提是与Eddington限制相比,质量吸积率要小得多。磁岛是通过在赤道附近的重新连接而产生的,并朝向事件范围迁移,在很大一部分时间内从BH附近驱出磁通管。当磁岛由于红移而粘在地平线上时,强烈的磁场将穿透地平线,从而有效地从BH中提取能量。在这个耀斑的阶段,BH间隙出现在内部光表面周围,其子午线返回电流朝着赤道内的赤道。如果质量积聚率为Eddington限制的0.025%,则BH的旋转发光度将比耀斑期间的分析估计高16-19倍,尽管其长期平均值仅为其的6%。我们证明了提取的能量通量沿着磁场线螺纹的磁场线浓缩。这意味着,这种po循环的这种子午浓度可能会导致从低固定的BH系统形成肢体闪烁的喷气机。

We examine the temporary evolution of axisymmetric magnetospheres around rapidly rotating black holes (BHs), by applying our two-dimensional particle-in-cell simulation code. Assuming a stellar-mass BH, we find that the created pairs fail to screen the electric field along the magnetic field, provided that the mass accretion rate is much small compared to the Eddington limit. Magnetic islands are created by reconnection near the equator and migrate toward the event horizon, expelling magnetic flux tubes from the BH vicinity during a large fraction of time. When the magnetic islands stick to the horizon due to redshift and virtually vanish, a strong magnetic field penetrates the horizon, enabling efficient extraction of energy from the BH. During this flaring phase, a BH gap appears around the inner light surface with a strong meridional return current toward the equator within the ergosphere. If the mass accretion rate is 0.025 percent of the Eddington limit, the BH's spin-down luminosity becomes 16-19 times greater than its analytical estimate during the flares, although its long-term average is only 6 percent of it. We demonstrate that the extracted energy flux concentrates along the magnetic field lines threading the horizon in the middle latitudes. It is implied that this meridional concentration of the Poynting flux may result in the formation of limb-brightened jets from low-accreting BH systems.

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