Mass-redshift dependency of Supermassive Black Hole Binaries for the Gravitational Wave Background

Fuente: arXiv
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Main Authors: Kozhikkal, Musfar Muhamed, Chen, Siyuan, Theureau, Gilles, Habouzit, Melanie, Sesana, Alberto
Format: Preprint
Published: 2023
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author Kozhikkal, Musfar Muhamed
Chen, Siyuan
Theureau, Gilles
Habouzit, Melanie
Sesana, Alberto
author_facet Kozhikkal, Musfar Muhamed
Chen, Siyuan
Theureau, Gilles
Habouzit, Melanie
Sesana, Alberto
contents Studying how the black hole (BH) - (galaxy) bulge mass relation evolves with redshift provides valuable insights into the co-evolution of supermassive black holes and their host galaxies. However, obtaining accurate measurement of BH masses is challenging due to the bias towards the most massive and luminous galaxies. Instead we focus on the BH and bulge masses as they vary with redshift using the EAGLE, Illustris, TNG100, TNG300, Horizon-AGN and SIMBA large-scale cosmological simulations. We use an analytical astrophysical model with galaxy stellar mass function, pair fraction, merger timescale and BH-bulge mass relation extended to include redshift evolution. The model can predict the intensity of the gravitational wave background (GWB) produced by a population of supermassive black hole binary (SMBHB) as a function of the frequency. This allows us to compare the predictions of this model with the constraints of Pulsar Timing Array observations. Here, we employ Bayesian analysis for the parameter inference. We find that all six simulations are consistent $\leq 3.5σ$ with a range of simulated GWB spectra. By fixing the BH-bulge mass parameters to the simulations we analyze the changes in the constraints on the other astrophysical parameters. Furthermore, we also examine the variation in SMBHB merger rate with mass and redshift between these large-scale simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2305_18293
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Mass-redshift dependency of Supermassive Black Hole Binaries for the Gravitational Wave Background
Kozhikkal, Musfar Muhamed
Chen, Siyuan
Theureau, Gilles
Habouzit, Melanie
Sesana, Alberto
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
Studying how the black hole (BH) - (galaxy) bulge mass relation evolves with redshift provides valuable insights into the co-evolution of supermassive black holes and their host galaxies. However, obtaining accurate measurement of BH masses is challenging due to the bias towards the most massive and luminous galaxies. Instead we focus on the BH and bulge masses as they vary with redshift using the EAGLE, Illustris, TNG100, TNG300, Horizon-AGN and SIMBA large-scale cosmological simulations. We use an analytical astrophysical model with galaxy stellar mass function, pair fraction, merger timescale and BH-bulge mass relation extended to include redshift evolution. The model can predict the intensity of the gravitational wave background (GWB) produced by a population of supermassive black hole binary (SMBHB) as a function of the frequency. This allows us to compare the predictions of this model with the constraints of Pulsar Timing Array observations. Here, we employ Bayesian analysis for the parameter inference. We find that all six simulations are consistent $\leq 3.5σ$ with a range of simulated GWB spectra. By fixing the BH-bulge mass parameters to the simulations we analyze the changes in the constraints on the other astrophysical parameters. Furthermore, we also examine the variation in SMBHB merger rate with mass and redshift between these large-scale simulations.
title Mass-redshift dependency of Supermassive Black Hole Binaries for the Gravitational Wave Background
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2305.18293