Intermediate Mass Black Hole Binary Evolution in Nuclear Star Clusters: the effect of the stellar mass black hole population
Fazeel Mahmood Khan, Peter Berczik, Margarita Sobolenko, Andreas Just, Rainer Spurzem, Kelly Holley-Bockelmann, Andrea Valerio Macci\`o

TL;DR
This study uses high-resolution N-body simulations to show that stellar-mass black holes significantly accelerate the merger of intermediate-mass black hole binaries in nuclear star clusters, impacting their evolution and potential gravitational wave signals.
Contribution
First high-resolution simulations demonstrating the critical role of stellar-mass black holes in IMBH binary dynamics within nuclear star clusters.
Findings
Stellar-mass black holes nearly double the sinking rate of IMBH binaries.
Black hole cusps quickly recover and influence IMBH binary evolution.
Dense systems can enhance the formation of radial IMRIs.
Abstract
In this study, we investigate the dynamics of Intermediate-Mass Black Hole (IMBH) binaries within Nuclear Star Clusters (NSCs) that contain a population of stellar-mass black holes (BHs). We examine how these stellar and BH populations influence the dynamics of the IMBH binary and, in turn, how the evolving IMBH binary affects the surrounding stellar and BH populations. We conduct high-resolution -body simulations of NSCs constructed based on observational parameters from two local dwarf galaxies: NGC205 and NGC404. For the first time, we achieve a star particle mass resolution of and a BH mass resolution of . This level of resolution is crucial for accurately modeling the collisional dynamics of these dense systems. Including stellar-mass BHs within the stellar population significantly influences the IMBH binary dynamics, nearly doubling the…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Pulsars and Gravitational Waves Research · Galaxies: Formation, Evolution, Phenomena
