论文标题

Bardeen-Petterson效果,磁盘破裂和超大质黑洞二进制的旋转方向

The Bardeen-Petterson effect, disk breaking, and the spin orientations of supermassive black-hole binaries

论文作者

Steinle, Nathan, Gerosa, Davide

论文摘要

超级质量的黑洞二进制文件被动态摩擦,单个恒星的损失骨散射,磁盘迁移和重力波排放驱动。预计有两个主要的形式场景。在贫乏的银河环境中形成的二进制物不会经历磁盘迁移,并且可能以大致各向同性的自旋方向进入重力波统治相。相比之下,在富含气体的银河环境中发展的二进制物可能会经历磁盘积聚的突出阶段,在这种阶段,Bardeen-Petterson效应的作用是使黑洞的旋转与圆盘的轨道角动量保持一致。但是,如果预期积聚磁盘断裂对齐将被严重抑制 - 这种现象最近显示出在参数空间的很大一部分中。在本文中,我们首次考虑了磁盘破裂的影响,开发了一个半分析模型的超质量黑孔二进制组的旋转比对。我们的模型可以预测,根据自旋比对的效率,二进制的不同亚群的发生。这意味着将来的重力波观测到合并黑洞的观测可能会用于(i)区分气体富含气体和贫困的宿主,以及(ii)约束翘曲积聚磁盘的动力学。

Supermassive black-hole binaries are driven to merger by dynamical friction, loss-cone scattering of individual stars, disk migration, and gravitational-wave emission. Two main formation scenarios are expected. Binaries that form in gas-poor galactic environments do not experience disk migration and likely enter the gravitational-wave dominated phase with roughly isotropic spin orientations. Comparatively, binaries that evolve in gas-rich galactic environments might experience prominent phases of disk accretion, where the Bardeen-Petterson effect acts to align the spins of the black holes with the orbital angular momentum of the disk. However, if the accretion disk breaks alignment is expected to be strongly suppressed -- a phenomenon that was recently shown to occur in a large portion of the parameter space. In this paper, we develop a semi-analytic model of joint gas-driven migration and spin alignment of supermassive black-hole binaries taking into account the impact of disk breaking for the first time. Our model predicts the occurrence of distinct subpopulations of binaries depending on the efficiency of spin alignment. This implies that future gravitational-wave observations of merging black holes could potentially be used to (i) discriminate between gas-rich and gas-poor hosts and (ii) constrain the dynamics of warped accretion disks.

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