论文标题

磁磁盘中磁化不稳定性的非线性演变

Nonlinear evolution of the magnetorotational instability in eccentric disks

论文作者

Chan, Chi-Ho, Piran, Tsvi, Krolik, Julian H.

论文摘要

磁化不稳定性(MRI)已在圆形磁化磁盘中进行了广泛的研究,并且在多种情况下已经证明了其驱动积聚的能力。有理由期望偏心磁盘也存在,但是在这些磁盘中,MRI的行为仍然很大程度上是未知的领域。在这里,我们提出了遵循偏心磁盘中MRI非线性发展的第一个模拟。我们发现,偏心磁盘中的MRI以两种方式类似于循环磁盘,在饱和度的总体水平和详细饱和状态对磁拓扑的依赖性中。但是,与圆盘相反,在某些磁盘扇区中,偏心磁盘中的麦克斯韦应力可能是负面的,即使综合应力始终是正面的。角动量通量提高了磁盘内部的偏心率,并减少了外部部位的相同。由于从偏心轨道上积聚在黑洞上的材料比追踪最内向稳定圆形轨道的材料具有更多的能量,因此偏心磁盘的辐射效率可能明显低于圆形磁盘。这可能可以解决许多潮汐破坏事件中看到的“反向能量问题”。

The magnetorotational instability (MRI) has been extensively studied in circular magnetized disks, and its ability to drive accretion has been demonstrated in a multitude of scenarios. There are reasons to expect eccentric magnetized disks to also exist, but the behavior of the MRI in these disks remains largely uncharted territory. Here we present the first simulations that follow the nonlinear development of the MRI in eccentric disks. We find that the MRI in eccentric disks resembles circular disks in two ways, in the overall level of saturation and in the dependence of the detailed saturated state on magnetic topology. However, in contrast with circular disks, the Maxwell stress in eccentric disks can be negative in some disk sectors, even though the integrated stress is always positive. The angular momentum flux raises the eccentricity of the inner parts of the disk and diminishes the same of the outer parts. Because material accreting onto a black hole from an eccentric orbit possesses more energy than material tracing the innermost stable circular orbit, the radiative efficiency of eccentric disks may be significantly lower than circular disks. This may resolve the "inverse energy problem" seen in many tidal disruption events.

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