论文标题

动态形成的黑洞二进制:群集与弹出合并

Dynamically Formed Black Hole Binaries: In-Cluster Versus Ejected Mergers

论文作者

Anagnostou, Oliver, Trenti, Michele, Melatos, Andrew

论文摘要

激光干涉仪重力波观测站(LIGO)检测到的黑洞二进制(BHB)合并数量越来越大,有可能对构成紧凑型二进制双层的物理过程和天体物理条件进行前所未有的表征。在本文中,我们专注于通过最先进的58个直接的N体模拟,其中N <= 200,000个颗粒,包括恒星进化,引力制动,轨道衰减,通过重力辐射和银河系潮汐的相互作用,调查了致密星团中BHB的动态形成。这些模拟包括一系列代表典型的年轻球状簇的初始条件,包括原始二进制物的存在。该系统用于〜12 GYR。数据集产生117 BHB引力波事件,在其宿主群集中合并了97个二进制文件,并且在弹出后20个合并。在宇宙时代,只有8%的弹出BHB合并。该合并子集中的系统往往具有较小的分离和较大的偏心率,因为这种参数的组合会导致重力辐射的发射更大。我们证实了来自蒙特卡洛模拟的已知趋势,例如二元质量和群集的质量之间的抗相关性。此外,我们首次突出显示了集群内和弹出合并之间质量比分布的低值差异。但是,结果取决于对重力波后坐力强度的假设,因此不能以显着的置信度排除集群合并。需要更大的BHB合并目录和更广泛的N体模拟库来限制观察到的事件的起源。

The growing number of black hole binary (BHB) mergers detected by the Laser Interferometer Gravitational-Wave Observatory (LIGO) have the potential to enable an unprecedented characterization of the physical processes and astrophysical conditions that govern the formation of compact binaries. In this paper, we focus on investigating the dynamical formation of BHBs in dense star clusters through a state-of-art set of 58 direct N-body simulations with N <= 200,000 particles which include stellar evolution, gravitational braking, orbital decay through gravitational radiation and galactic tidal interactions. The simulations encompass a range of initial conditions representing typical young globular clusters, including the presence of primordial binaries. The systems are simulated for ~ 12 Gyr. The dataset yields 117 BHB gravitational wave events, with 97 binaries merging within their host cluster, and 20 merging after having been ejected. Only 8% of all ejected BHBs merge within the age of the Universe. Systems in this merging subset tend to have smaller separations and larger eccentricities, as this combination of parameters results in greater emission of gravitational radiation. We confirm known trends from Monte Carlo simulations, such as the anti-correlation between the mass of the binary and age of the cluster. In addition, we highlight for the first time a difference at low values of the mass ratio distribution between in-cluster and ejected mergers. However, the results depend on assumptions on the strength of gravitational wave recoils, thus in-cluster mergers cannot be ruled out at a significant level of confidence. A more substantial catalogue of BHB mergers and a more extensive library of N-body simulations are needed to constrain the origin of the observed events.

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