论文标题
原始黑洞的聚类演变
The Clustering Evolution of Primordial Black Holes
论文作者
论文摘要
原始的黑洞可能包括宇宙中暗物质的很大一部分,并负责来自Ligo/Pirgo协作观察到的黑洞合并的重力波信号。原始黑洞的空间聚类可能会影响其合并率,并对其质量和丰度的约束产生重大影响。我们提供了原始黑洞空间聚类演化的一些分析处理,将我们的结果与一些现有的N体数值模拟进行比较,并讨论对黑洞合并速率的影响。如果原始黑洞有助于暗物质的一小部分,则原始黑洞聚类无关。另一方面,对于对暗物质的大量贡献,我们认为聚类可能会将较晚的宇宙合并率提高到与Ligo/piro座检测率兼容的水平。至于在原始时期形成的黑洞二进制文件的早期宇宙合并速率,聚集减轻了Ligo/处女座的约束,但不会逃避它们。
Primordial black holes might comprise a significant fraction of the dark matter in the Universe and be responsible for the gravitational wave signals from black hole mergers observed by the LIGO/Virgo collaboration. The spatial clustering of primordial black holes might affect their merger rates and have a significant impact on the constraints on their masses and abundances. We provide some analytical treatment of the primordial black hole spatial clustering evolution, compare our results with some of the existing N-body numerical simulations and discuss the implications for the black hole merger rates. If primordial black holes contribute to a small fraction of the dark matter, primordial black hole clustering is not relevant. On the other hand, for a large contribution to the dark matter, we argue that the clustering may increase the late time Universe merger rate to a level compatible with the LIGO/Virgo detection rate. As for the early Universe merger rate of black hole binaries formed at primordial epochs, clustering alleviates the LIGO/Virgo constraints, but does not evade them.