Hierarchical Black Hole Mergers in Active Galactic Nuclei
Abstract
The origins of the stellar-mass black hole mergers discovered by LIGO/Virgo are still unknown. Here we show that, if migration traps develop in the \add{accretion} disks of Active Galactic Nuclei (AGNs) and promote the mergers of their captive black holes, the majority of black holes within disks will undergo hierarchical mergers---with one of the black holes being the remnant of a previous merger. 40% of AGN-assisted mergers detected by LIGO/Virgo will include a black hole with mass M, the mass limit from stellar core collapse. Hierarchical mergers at traps in AGNs will exhibit black hole spins (anti-)aligned with the binary's orbital axis, a distinct property from other hierarchical channels. Our results are suggestive, although not definitive (with Odds ratio of ), that LIGO's heaviest merger so far, GW170729, could have originated from this channel.
Cite
@article{arxiv.1906.09281,
title = {Hierarchical Black Hole Mergers in Active Galactic Nuclei},
author = {Yang Yang and Imre Bartos and V. Gayathri and Saavik Ford and Zoltan Haiman and Sergey Klimenko and Bence Kocsis and Szabolcs Márka and Zsuzsa Márka and Barry McKernan and Richard O'Shaugnessy},
journal= {arXiv preprint arXiv:1906.09281},
year = {2019}
}
Comments
6 pages, 3 figures; accepted in PRL