Handy Relation Between Binary Black Hole Merger Times and Host Galaxy Properties

Fuente: arXiv
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Main Authors: Holley-Bockelmann, Kelly, Khan, Fazeel, Williams, Isaiah, Roth, Jaelyn, Smith, Michael Rizzo, Porter, Kaitlin, Bellovary, Jillian, Derdzinski, Andrea, Macciò, Andrea
Format: Preprint
Published: 2025
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_version_ 1866911111529365504
author Holley-Bockelmann, Kelly
Khan, Fazeel
Williams, Isaiah
Roth, Jaelyn
Smith, Michael Rizzo
Porter, Kaitlin
Bellovary, Jillian
Derdzinski, Andrea
Macciò, Andrea
author_facet Holley-Bockelmann, Kelly
Khan, Fazeel
Williams, Isaiah
Roth, Jaelyn
Smith, Michael Rizzo
Porter, Kaitlin
Bellovary, Jillian
Derdzinski, Andrea
Macciò, Andrea
contents Over the past 15 years, the evidence has clearly demonstrated that massive black hole (MBH) binary merger timescales depend strongly on the structural and kinematic properties of their host galaxy. Stellar density, gas content, shape and kinematics all play a role, combining in non-linear ways to effect the evolution of the binary. The binary properties themselves, such as eccentricity, mass ratio, and orbital plane, all matter as well. This makes it nontrivial to estimate accurate cosmological MBH binary merger rates, or to generate merger rate ranges that reflect the distribution of galaxy hosts and orbits. Using an extensive set of high-resolution direct N-body simulations in which the shape, structure, and kinematics of each galaxy host are directly informed by observations, we map out MBH binary merger timescales over a range of galaxy hosts and MBH binary orbits. This yields a convenient set of scaling relations to determine MBH binary merger timescales -- and the range of merger timescales -- as functions of basic observables. Such scaling relations can be readily employed as a subgrid model in cosmological or semi-analytic studies, for example, to model event rates for LISA or pulsar timing.
format Preprint
id arxiv_https___arxiv_org_abs_2508_14253
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Handy Relation Between Binary Black Hole Merger Times and Host Galaxy Properties
Holley-Bockelmann, Kelly
Khan, Fazeel
Williams, Isaiah
Roth, Jaelyn
Smith, Michael Rizzo
Porter, Kaitlin
Bellovary, Jillian
Derdzinski, Andrea
Macciò, Andrea
Astrophysics of Galaxies
Over the past 15 years, the evidence has clearly demonstrated that massive black hole (MBH) binary merger timescales depend strongly on the structural and kinematic properties of their host galaxy. Stellar density, gas content, shape and kinematics all play a role, combining in non-linear ways to effect the evolution of the binary. The binary properties themselves, such as eccentricity, mass ratio, and orbital plane, all matter as well. This makes it nontrivial to estimate accurate cosmological MBH binary merger rates, or to generate merger rate ranges that reflect the distribution of galaxy hosts and orbits. Using an extensive set of high-resolution direct N-body simulations in which the shape, structure, and kinematics of each galaxy host are directly informed by observations, we map out MBH binary merger timescales over a range of galaxy hosts and MBH binary orbits. This yields a convenient set of scaling relations to determine MBH binary merger timescales -- and the range of merger timescales -- as functions of basic observables. Such scaling relations can be readily employed as a subgrid model in cosmological or semi-analytic studies, for example, to model event rates for LISA or pulsar timing.
title Handy Relation Between Binary Black Hole Merger Times and Host Galaxy Properties
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2508.14253