Thin accretion disk images of rotating hairy Horndeski black holes

Fuente: arXiv
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Main Authors: Heydari-Fard, Mohaddese, Heydari-Fard, Malihe, Riazi, Nematollah
Format: Preprint
Published: 2023
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author Heydari-Fard, Mohaddese
Heydari-Fard, Malihe
Riazi, Nematollah
author_facet Heydari-Fard, Mohaddese
Heydari-Fard, Malihe
Riazi, Nematollah
contents By considering the steady-state Novikov-Thorne model, we study thin accretion disk processes for rotating hairy black holes in the framework of the Horndeski gravity. We obtain the electromagnetic properties of accretion disk around such black holes and investigate the effects of the hair parameter $h$ on them. We find that by decreasing the hair parameter from the Kerr limit, $h\rightarrow0$, the radius of the innermost stable circular orbit decreases which makes thin accretion disks around rotating hairy black holes in Horndeski gravity more efficient than that for the Kerr black hole in general relativity. Furthermore, using the numerical ray-tracing method, we plot thin accretion disk images around these black holes and investigate the effects of hair parameter on the central shadow area of accretion disk.
format Preprint
id arxiv_https___arxiv_org_abs_2311_12393
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Thin accretion disk images of rotating hairy Horndeski black holes
Heydari-Fard, Mohaddese
Heydari-Fard, Malihe
Riazi, Nematollah
General Relativity and Quantum Cosmology
By considering the steady-state Novikov-Thorne model, we study thin accretion disk processes for rotating hairy black holes in the framework of the Horndeski gravity. We obtain the electromagnetic properties of accretion disk around such black holes and investigate the effects of the hair parameter $h$ on them. We find that by decreasing the hair parameter from the Kerr limit, $h\rightarrow0$, the radius of the innermost stable circular orbit decreases which makes thin accretion disks around rotating hairy black holes in Horndeski gravity more efficient than that for the Kerr black hole in general relativity. Furthermore, using the numerical ray-tracing method, we plot thin accretion disk images around these black holes and investigate the effects of hair parameter on the central shadow area of accretion disk.
title Thin accretion disk images of rotating hairy Horndeski black holes
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2311.12393