Kiselev black strings: the charged rotating solutions

Fuente: arXiv
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Main Authors: Barbosa, Leonardo G., Ramos, Victor Hugo M., Santos, Luis Cesar N. dos, Barros Jr, Celso C.
Format: Preprint
Published: 2025
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author Barbosa, Leonardo G.
Ramos, Victor Hugo M.
Santos, Luis Cesar N. dos
Barros Jr, Celso C.
author_facet Barbosa, Leonardo G.
Ramos, Victor Hugo M.
Santos, Luis Cesar N. dos
Barros Jr, Celso C.
contents We investigate the properties of a charged rotating black string immersed in a Kiselev anisotropic fluid in anti-de Sitter (AdS) spacetime. The Einstein-Maxwell equations with an anisotropic stress-energy tensor and cosmological constant are analyzed and solved exactly. In this work, we calculate the Kretschmann scalar, obtaining a consistent result that agrees with the existing literature in the absence of charge and fluid. The rotating solution is obtained by applying a coordinate transformation on time and angular coordinates. The event horizon associated with specific values of the equation of state parameter $w_q$ is studied. The results show an important influence of the fluid parameters $N_{q}$ and $w_{q}$, the charge parameter $Q$, and the rotation parameter $a$ on the size of the black string horizon. In addition, we determine the conditions for the existence of closed timelike curves (CTCs) and compute the conserved charges, such as mass, angular momentum, and electric charge of the black string. Utilizing the Klein-Gordon equation, we employ the quantum particle tunneling approach to obtain the probability of charged scalar particles tunneling across the event horizon. We obtain the correspondent Hawking temperature as a consequence. Furthermore, we examine the thermodynamic properties, including entropy and heat capacity, to assess the effects of the quintessence field and charge on the black string. The results include particular cases such as the Lemos black string, providing a broader view of black string configurations in AdS spacetime.
format Preprint
id arxiv_https___arxiv_org_abs_2503_02081
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Kiselev black strings: the charged rotating solutions
Barbosa, Leonardo G.
Ramos, Victor Hugo M.
Santos, Luis Cesar N. dos
Barros Jr, Celso C.
General Relativity and Quantum Cosmology
We investigate the properties of a charged rotating black string immersed in a Kiselev anisotropic fluid in anti-de Sitter (AdS) spacetime. The Einstein-Maxwell equations with an anisotropic stress-energy tensor and cosmological constant are analyzed and solved exactly. In this work, we calculate the Kretschmann scalar, obtaining a consistent result that agrees with the existing literature in the absence of charge and fluid. The rotating solution is obtained by applying a coordinate transformation on time and angular coordinates. The event horizon associated with specific values of the equation of state parameter $w_q$ is studied. The results show an important influence of the fluid parameters $N_{q}$ and $w_{q}$, the charge parameter $Q$, and the rotation parameter $a$ on the size of the black string horizon. In addition, we determine the conditions for the existence of closed timelike curves (CTCs) and compute the conserved charges, such as mass, angular momentum, and electric charge of the black string. Utilizing the Klein-Gordon equation, we employ the quantum particle tunneling approach to obtain the probability of charged scalar particles tunneling across the event horizon. We obtain the correspondent Hawking temperature as a consequence. Furthermore, we examine the thermodynamic properties, including entropy and heat capacity, to assess the effects of the quintessence field and charge on the black string. The results include particular cases such as the Lemos black string, providing a broader view of black string configurations in AdS spacetime.
title Kiselev black strings: the charged rotating solutions
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2503.02081