Seeding Supermassive Black Holes with Self-Interacting Dark Matter: A Unified Scenario with Baryons

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Main Authors: Feng, Wei-Xiang, Yu, Hai-Bo, Zhong, Yi-Ming
Format: Preprint
Published: 2020
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author Feng, Wei-Xiang
Yu, Hai-Bo
Zhong, Yi-Ming
author_facet Feng, Wei-Xiang
Yu, Hai-Bo
Zhong, Yi-Ming
contents Observations show that supermassive black holes (SMBHs) with a mass of $\sim10^9 M_\odot$ exist when the Universe is just $6\%$ of its current age. We propose a scenario where a self-interacting dark matter halo experiences gravothermal instability and its central region collapses into a seed black hole. The presence of baryons in protogalaxies could significantly accelerate the gravothermal evolution of the halo and shorten collapse timescales. The central halo could dissipate its angular momentum remnant via viscosity induced by the self-interactions. The host halo must be on high tails of density fluctuations, implying that high-$z$ SMBHs are expected to be rare in this scenario. We further derive conditions for triggering general relativistic instability of the collapsed region. Our results indicate that self-interacting dark matter can provide a unified explanation for diverse dark matter distributions in galaxies today and the origin of SMBHs at redshifts $z\sim6-7$.
format Preprint
id arxiv_https___arxiv_org_abs_2010_15132
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Seeding Supermassive Black Holes with Self-Interacting Dark Matter: A Unified Scenario with Baryons
Feng, Wei-Xiang
Yu, Hai-Bo
Zhong, Yi-Ming
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
High Energy Physics - Phenomenology
Observations show that supermassive black holes (SMBHs) with a mass of $\sim10^9 M_\odot$ exist when the Universe is just $6\%$ of its current age. We propose a scenario where a self-interacting dark matter halo experiences gravothermal instability and its central region collapses into a seed black hole. The presence of baryons in protogalaxies could significantly accelerate the gravothermal evolution of the halo and shorten collapse timescales. The central halo could dissipate its angular momentum remnant via viscosity induced by the self-interactions. The host halo must be on high tails of density fluctuations, implying that high-$z$ SMBHs are expected to be rare in this scenario. We further derive conditions for triggering general relativistic instability of the collapsed region. Our results indicate that self-interacting dark matter can provide a unified explanation for diverse dark matter distributions in galaxies today and the origin of SMBHs at redshifts $z\sim6-7$.
title Seeding Supermassive Black Holes with Self-Interacting Dark Matter: A Unified Scenario with Baryons
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2010.15132