Comparing hierarchical black hole mergers in star clusters and active galactic nuclei
arXiv:2211.11150 · doi:10.1103/PhysRevD.107.063007
Abstract
Star clusters (SCs) and active galactic nuclei (AGNs) are promising sites for the occurrence of hierarchical black hole (BH) mergers. We use simple models to compare hierarchical BH mergers in two of the dynamical formation channels. We find that the primary mass distribution of hierarchical mergers in AGNs is higher than that in SCs, with the peaks of and , respectively. The effective spin () distribution of hierarchical mergers in SCs is symmetrical around zero as expected and of the mergers have . The distribution of in AGNs is narrow and prefers positive values with the peak of due to the assistance of AGN disks. BH hierarchical growth efficiency in AGNs, with at least of mergers being hierarchies, is much higher than the efficiency in SCs. Furthermore, there are obvious differences in the mass ratios and effective precession parameters of hierarchical mergers in SCs and AGNs. We argue that the majority of the hierarchical merger candidates detected by LIGO-Virgo may originate from the AGN channel as long as AGNs get half of the hierarchical merger rate.
12 pages, 5 figures, 2 tables, accepted for publication in PHYS. REV. D; v2. add Figs. 4 and 5, showing mass-ratios and effective precession parameters, respectively; v3. delete an additional free parameter (maximum generation, ), replot Fig. 3 using the mergers detected by LIGO-Virgo, and add Yong Yuan as the third author of this manuscript; v4. add more details for SNR
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