论文标题

引力波观测值可能能够检测到黑洞的双曲线遇到

Gravitational Wave observatories may be able to detect hyperbolic encounters of Black Holes

论文作者

Mukherjee, Sajal, Mitra, Sanjit, Chatterjee, Sourav

论文摘要

引力波(GW)天文学有望观察到不同种类的天体物理来源。在这里,我们探讨了从紧凑型恒星与地面干涉探测器的双曲线相互作用中检测GW的可能性。据信,诸如球状簇之类的结合紧凑型簇可以成为这些相互作用的主要环境。我们通过考虑群集内的局部几何形状,考虑到有限距离的散射概率,并假设由可用的数值模型,它们的形成时间和其中的恒星演化引导的逼真的聚类特性来估算此类事件的检测率。我们发现,即使在保守的限制中,也有可能在未来几年内通过目前的观测网络来检测这种黑洞的遇到,并具有持续的灵敏度升级,并且每年与下一代观测者每年进行一到几个事件。实际上,实际检测率可以显着超过估计的平均率,因为在很大的人群中找到离群值的机会可能很高。这样的观察结果(或没有观察)可能会提供至关重要的限制,以估计宇宙中孤立的紧凑型恒星的数量。这些发现将是一个令人兴奋的发现,并且对二进制合并的观察将是免费的,这使我们更近一步解决了一个基本问题,可观察到的宇宙中有多少个黑洞。

Gravitational Wave (GW) astronomy promises to observe different kinds of astrophysical sources. Here we explore the possibility of detection of GWs from hyperbolic interactions of compact stars with ground-based interferometric detectors. It is believed that a bound compact cluster, such as a globular cluster, can be a primary environment for these interactions. We estimate the detection rates for such events by considering local geometry within the cluster, accounting for scattering probability of compact stars at finite distances, and assuming realistic cluster properties guided by available numerical models, their formation times, and evolution of stars inside them. We find that, even in the conservative limit, it may be possible to detect such black hole encounters in the next few years by the present network of observatories with the ongoing sensitivity upgrades and one to few events per year with the next generation observatories. In practice, actual detection rates can significantly surpass the estimated average rates, since the chances of finding outliers in a very large population can be high. Such observations (or, no observation) may provide crucial constraints to estimate the number of isolated compact stars in the universe. These detections will be exciting discoveries on their own and will be complimentary to observations of binary mergers bringing us one step closer to address a fundamental question, how many black holes are there in the observable universe.

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