The sound of quintessence: analogue Kiselev acoustic black holes

Fuente: arXiv
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Main Authors: Santos, Luis C. N., Vieira, H. S., da Silva, Franciele M., Bezerra, V. B.
Format: Preprint
Published: 2025
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_version_ 1866909661563715584
author Santos, Luis C. N.
Vieira, H. S.
da Silva, Franciele M.
Bezerra, V. B.
author_facet Santos, Luis C. N.
Vieira, H. S.
da Silva, Franciele M.
Bezerra, V. B.
contents In this work, we demonstrate that the geometry of a spherically symmetric black hole surrounded by a Kiselev anisotropic fluid can be effectively mimicked by an experimental setup as the ones used to investigate some physical phenomena associated with acoustic black holes. Thus, we construct the metric describing Kiselev acoustic black holes by using the Gross--Pitaevskii theory and present a general analytical solution that encompasses, as particular cases, several classes of geometries associated with black holes. This unified framework allows for the description of a wide variety of analogue spacetimes, including new analogue geometries that have not been previously explored in the literature. Then, we examine the behavior of scalar field perturbations in this background by solving the massless Klein--Gordon equation. Depending on the boundary conditions between the acoustic event horizon and infinity, we obtain the quasinormal and quasibound spectra. This study opens up avenues for experimental investigation within the context of analog gravity models, by offering new possibilities to simulate and study black hole phenomena in laboratory settings.
format Preprint
id arxiv_https___arxiv_org_abs_2506_21639
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The sound of quintessence: analogue Kiselev acoustic black holes
Santos, Luis C. N.
Vieira, H. S.
da Silva, Franciele M.
Bezerra, V. B.
General Relativity and Quantum Cosmology
In this work, we demonstrate that the geometry of a spherically symmetric black hole surrounded by a Kiselev anisotropic fluid can be effectively mimicked by an experimental setup as the ones used to investigate some physical phenomena associated with acoustic black holes. Thus, we construct the metric describing Kiselev acoustic black holes by using the Gross--Pitaevskii theory and present a general analytical solution that encompasses, as particular cases, several classes of geometries associated with black holes. This unified framework allows for the description of a wide variety of analogue spacetimes, including new analogue geometries that have not been previously explored in the literature. Then, we examine the behavior of scalar field perturbations in this background by solving the massless Klein--Gordon equation. Depending on the boundary conditions between the acoustic event horizon and infinity, we obtain the quasinormal and quasibound spectra. This study opens up avenues for experimental investigation within the context of analog gravity models, by offering new possibilities to simulate and study black hole phenomena in laboratory settings.
title The sound of quintessence: analogue Kiselev acoustic black holes
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2506.21639