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Self-gravitating warped disks around nuclear black holes

机译:核黑洞周围的自我扭曲磁盘

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Many galactic nuclei contain disks of gas and possibly stars surrounding a super-massive black hole. These disks may play a key role in the evolution of galactic centers. Here we address the problem of finding stable warped equilibrium configurations for such disks, considering the attraction by the black hole and the disk self-gravity as the only acting forces. We model these disks as a collection of concentric, circular rings. We find the equilibria of such systems of rings, and determine how they scale with the ring parameters and the mass of the central black hole. We show that in some cases these disk equilibria may be highly warped. We then analyze the stability of these disks, using both direct time integration and linear stability analysis. This shows that the warped disks are stable for a range of disk-to-black hole mass ratios, when the rings extend over a limited range of radii
机译:许多银核含有气体的气体,可能是一个超巨大的黑洞周围的恒星。这些磁盘可能在银河中心的演变中发挥关键作用。在这里,我们解决了为这种磁盘找到稳定的翘曲均衡配置的问题,考虑到黑洞的吸引力和磁盘自重作为唯一的作用力。我们将这些磁盘塑造为同心,圆环的集合。我们发现这种环的均衡,并确定它们如何用环参数和中央黑洞的质量缩放。我们表明,在某些情况下,这些磁盘均力可能会高度翘曲。然后,我们使用直接时间集成和线性稳定性分析来分析这些磁盘的稳定性。这表明当环在一个有限的半径范围内延伸时,翘曲磁盘对于一系列磁盘到黑洞质量比稳定

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