论文标题
磁性弹出磁盘:赤道流出的垂直磁性黑洞附近
Magnetically Ejected Disks: Equatorial Outflows Near Vertically Magnetized Black Hole
论文作者
论文摘要
黑洞吸引了周围环境的气态材料。宇宙等离子体在黑洞附近高电导环境中流动的电流在很大程度上被电离和磁化。然后,积聚的过程将磁通量带到事件范围,$ r \ simeq r _+$。另一方面,磁压作用于积聚。它不仅可以阻止流入,而且如果磁排斥占上风,它甚至可以将血浆从黑洞中推开。黑洞本身不会保持磁场。 在此贡献中,我们展示了由大规模磁场驱动的赤道流出的示例。我们通过球形对称分布的气体启动计算,该分布从较大距离($ r \ gg r _+$)流到域。流动以稳定的(邦迪)溶液结算后,我们强加了与黑洞旋转轴对齐的均匀(WALD)磁场的轴向对称配置。然后,我们通过采用接近完美传导流体的无力极限的MHD代码来进化初始配置。 我们观察到力的磁力线如何开始用血浆积聚,而赤道间歇性流出发展并继续从黑洞中驱逐一些材料。
Black holes attract gaseous material from the surrounding environment. Cosmic plasma is largely ionized and magnetized because of electric currents flowing in the highly conductive environment near black holes; the process of accretion then carries the magnetic flux onto the event horizon, $r\simeq R_+$. On the other hand, magnetic pressure acts against accretion. It can not only arrest the inflow but it can even push the plasma away from the black hole if the magnetic repulsion prevails. The black hole does not hold the magnetic field by itself. In this contribution we show an example of an equatorial outflow driven by a large scale magnetic field. We initiate our computations with a spherically symmetric distribution of gas, which flows onto the domain from a large distance, $r\gg R_+$. After the flow settles in a steady (Bondi) solution, we impose an axially symmetric configuration of a uniform (Wald) magnetic field aligned with the rotation axis of the black hole. Then we evolve the initial configuration numerically by employing the MHD code that approaches the force-free limit of a perfectly conducting fluid. We observe how the magnetic lines of force start accreting with the plasma while an equatorial intermittent outflow develops and goes on ejecting some material away from the black hole.