论文标题
在3D低质量AGN磁盘中收缩和扩展二进制黑洞:分离的重要性
Contracting and Expanding Binary Black Holes in 3D Low-Mass AGN Disks: The Importance of Separation
论文作者
论文摘要
Ligo/处女座已检测到可能起源于活性银河核(AGN)的积聚磁盘的几个二元黑洞(BBH)合并事件。这些事件需要单独的黑洞质量,这些黑洞质量落在两对不稳定性超新星质量间隙中,因此这些黑洞可能是从分层合并中种植的。 AGN磁盘是分层合并的主要环境,因此是BBH重力波事件祖细胞的潜在位置。因此,了解嵌入在AGN磁盘中的BBH与周围环境相互作用对于确定这种相互作用是否会导致其合并至关重要。但是,此过程几乎没有高保真度模拟,几乎所有都是二维的。我们介绍了与AGN磁盘相互作用的3D,高分辨率的局部剪切盒模拟的结果。在对同类的第一个模拟中,我们专注于在不同BBH分离下确定质量积聚率和轨道演化率。我们发现以超过山地半径合同的分离大于10%的圆形,相等的质量BBH,同时以超级 - 埃德丁顿的速度积聚。但是,在较小的分离处,我们的3D模拟发现BBHS扩大了轨道。该结果表明,AGN磁盘可能很难将BBH推向合并,但是我们讨论了几种机制,包括MHD湍流以及辐射性和机械反馈,这可能会减轻这一困难。
LIGO/Virgo has detected several binary black hole (BBH) merger events that may have originated in the accretion disks of Active Galactic Nuclei (AGN). These events require individual black hole masses that fall within the pair instability supernova mass gap, and therefore these black holes may have been grown from hierarchical mergers. AGN disks are a prime environment for hierarchical mergers, and thus a potential location for the progenitors of BBH gravitational wave events. Understanding how a BBH embedded in an AGN disk interacts with the surrounding environment is thus crucial for determining if this interaction can lead to its merger. However, there are few high fidelity simulations of this process, and almost all are two-dimensional. We present the results from 3D, high-resolution, local shearing-box simulations of an embedded BBH interacting with an AGN disk. In these first simulations of their kind, we focus on determining the mass accretion rate and the orbital evolution rate at different BBH separations. We find that circular, equal-mass BBHs with separations greater than 10% of their Hill radius contract while accreting at a super-Eddington rate. At smaller separations, however, our 3D simulations find that BBHs expand their orbits. This result suggests that it may be difficult for an AGN disk to push a BBH to merger, but we discuss several mechanisms, including MHD turbulence and radiative and mechanical feedback, that could alleviate this difficulty.