论文标题
薄积盘中的二进制二进制器的燃气驱动灵感
Gas-driven inspiral of binaries in thin accretion disks
论文作者
论文摘要
在超级质量黑洞二进制(SMBHB)上的气体积聚的数值研究通常仅限于在活性银河核(AGN)中磁盘厚10-100倍的条件。这种差异源于技术局限性,也来自于出版偏见,偏向于复制信托数值模型。在这里,我们介绍了二进制轨道演化如何随盘尺度高度变化的首次系统研究。我们报告了三个关键结果:(1)二进制轨道演化从悬而未决的磁盘(纵横比〜0.1)的转换,以灵感在临界纵横比的更真实,更薄的磁盘〜0.04,对应于轨道马赫数〜25。 (2)二元上的净扭矩是由于绕与黑洞附近的气体绕的正扭矩与来自CBD内部边缘的负扭矩之间的竞争引起的,这对于较薄的磁盘而言是密集的。这导致二进制磁盘上二进制的净扭矩越来越负。 (3)积聚率随着马赫数的增加而适度抑制。我们讨论我们的结果如何影响纳米Hz引力波背景的建模以及丽莎合并事件速率的估计。
Numerical studies of gas accretion onto supermassive black hole binaries (SMBHBs) have generally been limited to conditions where the circumbinary disk (CBD) is 10-100 times thicker than expected for disks in active galactic nuclei (AGN). This discrepancy arises from technical limitations, and also from publication bias toward replicating fiducial numerical models. Here we present the first systematic study of how the binary's orbital evolution varies with disk scale height. We report three key results: (1) Binary orbital evolution switches from outspiralling for warm disks (aspect ratio ~0.1), to inspiralling for more realistic cooler, thinner disks at a critical aspect ratio ~0.04, corresponding to orbital Mach number ~25. (2) The net torque on the binary arises from a competition between positive torque from gas orbiting close to the black holes, and negative torque from the inner edge of the CBD, which is denser for thinner disks. This leads to increasingly negative net torques on the binary for increasingly thin disks. (3) The accretion rate is modestly suppressed with increasing Mach number. We discuss how our results may influence modeling of the nano-Hz gravitational wave background, as well as estimates of the LISA merger event rate.