Massive black hole assembly in nuclear star clusters
Abstract
Nuclear star clusters, which fragment into metal-poor stars in situ at the centers of protogalaxies, provide ideal environments for the formation of intermediate-mass black holes with masses . We utilize the semianalytic model implemented in Rapster, a public rapid cluster evolution code. We implement simple recipes for stellar collisions and gas accretion/expulsion into the code and identify the regimes where each channel contributes to the dynamical formation of intermediate-mass black holes via repeated mergers of stellar black hole seeds. We find that intermediate-mass black hole formation in gas-rich environments is almost inevitable if the initial mean density of the nuclear cluster is . A million solar mass black hole can form within 100~Myr in the heaviest () and most compact () nuclear clusters. We demonstrate that by today these resemble the observed range of nuclear clusters in dwarf galaxies and that there are potential gravitational-wave signatures of the massive black hole formation process.
Cite
@article{arxiv.2212.06845,
title = {Massive black hole assembly in nuclear star clusters},
author = {Konstantinos Kritos and Emanuele Berti and Joseph Silk},
journal= {arXiv preprint arXiv:2212.06845},
year = {2023}
}
Comments
13 pages, 7 figures, matches published version