Black holes immersed in modified Chaplygin-like dark fluid and cloud of strings: geodesics, shadows, and images

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Xiang-Qian, Kim, Yoonbai, Lee, Bum-Hoon, Yan, Hao-Peng, Yue, Xiao-Jun
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912381057105920
author Li, Xiang-Qian
Kim, Yoonbai
Lee, Bum-Hoon
Yan, Hao-Peng
Yue, Xiao-Jun
author_facet Li, Xiang-Qian
Kim, Yoonbai
Lee, Bum-Hoon
Yan, Hao-Peng
Yue, Xiao-Jun
contents This study investigates a black hole surrounded by a cloud of strings and a cosmological dark fluid characterized by a modified Chaplygin-like equation of state (MCDF), $p=Aρ-B/ρ^β$. We analyze its geodesic structure, shadow, and optical appearance. Analysis of the effective potential and epicyclic frequencies reveals that the existence of innermost/outermost stable circular orbits (ISCOs/OSCOs) for timelike particles is controlled by the parameters of the MCDF and the cloud of strings. The behavior of orbital conserved quantities and the Keplerian frequency are also examined. By equating the influence of the MCDF on the spacetime metric at spatial infinity with that of a cosmological constant, we constrain the MCDF parameters using the observed shadow radii of Sgr A* and M87*. We investigate the effects of the cloud of strings and MCDF on the black hole's shadows and optical images, assuming various thin disk accretion profiles. Using the method developed by Wald and collaborators, light trajectories are classified by their impact parameters into direct emission, the lensing ring, and the photon ring. The presence of OSCOs can lead to the existence of outer edges in the direct emission and lensing ring images. Observed brightness primarily originates from direct emission, with a minor contribution from the lensing ring, while the photon ring's contribution is negligible due to extreme demagnification. The influence of the cloud of strings and MCDF parameters on all results is analyzed throughout the study.
format Preprint
id arxiv_https___arxiv_org_abs_2505_12077
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Black holes immersed in modified Chaplygin-like dark fluid and cloud of strings: geodesics, shadows, and images
Li, Xiang-Qian
Kim, Yoonbai
Lee, Bum-Hoon
Yan, Hao-Peng
Yue, Xiao-Jun
General Relativity and Quantum Cosmology
This study investigates a black hole surrounded by a cloud of strings and a cosmological dark fluid characterized by a modified Chaplygin-like equation of state (MCDF), $p=Aρ-B/ρ^β$. We analyze its geodesic structure, shadow, and optical appearance. Analysis of the effective potential and epicyclic frequencies reveals that the existence of innermost/outermost stable circular orbits (ISCOs/OSCOs) for timelike particles is controlled by the parameters of the MCDF and the cloud of strings. The behavior of orbital conserved quantities and the Keplerian frequency are also examined. By equating the influence of the MCDF on the spacetime metric at spatial infinity with that of a cosmological constant, we constrain the MCDF parameters using the observed shadow radii of Sgr A* and M87*. We investigate the effects of the cloud of strings and MCDF on the black hole's shadows and optical images, assuming various thin disk accretion profiles. Using the method developed by Wald and collaborators, light trajectories are classified by their impact parameters into direct emission, the lensing ring, and the photon ring. The presence of OSCOs can lead to the existence of outer edges in the direct emission and lensing ring images. Observed brightness primarily originates from direct emission, with a minor contribution from the lensing ring, while the photon ring's contribution is negligible due to extreme demagnification. The influence of the cloud of strings and MCDF parameters on all results is analyzed throughout the study.
title Black holes immersed in modified Chaplygin-like dark fluid and cloud of strings: geodesics, shadows, and images
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2505.12077