C

Kyungsuk Cho, S. Bong, J. Chae, Yeon-Han Kim, Young-deuk Park
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Abstract

We study a warping instability of a geometrically thin, non-self-gravitating disk surrounding binary supermassive black holes on a circular orbit. Such a circumbinary disk is subject to not only tidal torques due to the binary gravitational potential but also radiative torques due to radiation emitted from an accretion disk around each black hole. We find that a circumbinary disk initially aligned with the binary orbital plane is unstable to radiation-driven warping beyond the marginally stable warping radius, which is sensitive to both the ratio of vertical to horizontal shear viscosities and the mass-to-energy conversion efficiency. As expected, the tidal torques give no contribution to the growth of warping modes but tend to align the circumbinary disk with the orbital plane. Since the tidal torques can suppress the warping modes in the inner part of circumbinary disk, the circumbinary disk starts to be warped at radii larger than the marginally stable warping radius. If the warping radius is of the order of 0.1 pc, a resultant semi-major axis is estimated to be of the order of 10−2 pc to 10−4 pc for 107M black hole. We also discuss the possibility that the central objects of observed warped maser disks in active galactic nuclei are binary supermassive black holes with a triple disk: two accretion disks around the individual black holes and one circumbinary disk surrounding them.
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C
我们研究了在圆形轨道上围绕双超大质量黑洞的几何薄的非自引力盘的翘曲不稳定性。这样的环双星盘不仅受到由双星引力势引起的潮汐力矩的影响,而且还受到由每个黑洞周围的吸积盘发出的辐射引起的辐射力矩的影响。我们发现,初始对准双星轨道平面的环双星盘在超出边缘稳定翘曲半径后,对辐射驱动翘曲不稳定,这对垂直与水平剪切粘度比和质能转换效率都很敏感。正如预期的那样,潮汐力矩对翘曲模式的增长没有贡献,但倾向于将环双星盘与轨道平面对齐。由于潮汐力矩可以抑制环双盘内部的翘曲模式,因此环双盘在大于边缘稳定翘曲半径的半径处开始翘曲。如果翘曲半径约为0.1 pc,则由此产生的半长轴估计为107M黑洞的10−2 pc至10−4 pc。我们还讨论了在活动星系核中观测到的扭曲脉泽盘的中心物体是具有三重盘的双星超大质量黑洞的可能性:两个吸积盘围绕着单个黑洞,一个环双星盘围绕着它们。
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