Finslerian wormhole solution in the framework of modified gravity

Fuente: arXiv
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Autores principales: Malligawad, Manjunath, Narasimhamurthy, S. K., Nekouee, Z., Kumbar, Mallikarjun Y.
Formato: Preprint
Publicado: 2023
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author Malligawad, Manjunath
Narasimhamurthy, S. K.
Nekouee, Z.
Kumbar, Mallikarjun Y.
author_facet Malligawad, Manjunath
Narasimhamurthy, S. K.
Nekouee, Z.
Kumbar, Mallikarjun Y.
contents This article investigates the properties of a wormhole model in a specific gravity theory, namely $f(Ric, T)=Ric+2λT$. The wormhole solution is analyzed using an exponential shape function. The study examines various parameters, such as density, radial pressure, transverse pressure, equation-of-state parameters, and energy conditions, within the framework of deformed gravity. The research emphasizes the influence of the parameter $λ$ on energy condition violations and the equilibrium state of the Finslerian wormhole solution. These effects are attributed to anisotropic and hydrostatic forces present in modified gravity. The study demonstrates that the gravity model effectively captures the characteristics of wormholes within the Finslerian space-time. Additionally, the identified features of the wormhole are utilized to visualize its structure by creating a three-dimensional representation of the embedded surface. In summary, this research contributes to understanding wormholes in modified gravity theories, highlighting the importance of the parameter $λ$ in determining their behavior and properties.
format Preprint
id arxiv_https___arxiv_org_abs_2302_02983
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Finslerian wormhole solution in the framework of modified gravity
Malligawad, Manjunath
Narasimhamurthy, S. K.
Nekouee, Z.
Kumbar, Mallikarjun Y.
General Relativity and Quantum Cosmology
This article investigates the properties of a wormhole model in a specific gravity theory, namely $f(Ric, T)=Ric+2λT$. The wormhole solution is analyzed using an exponential shape function. The study examines various parameters, such as density, radial pressure, transverse pressure, equation-of-state parameters, and energy conditions, within the framework of deformed gravity. The research emphasizes the influence of the parameter $λ$ on energy condition violations and the equilibrium state of the Finslerian wormhole solution. These effects are attributed to anisotropic and hydrostatic forces present in modified gravity. The study demonstrates that the gravity model effectively captures the characteristics of wormholes within the Finslerian space-time. Additionally, the identified features of the wormhole are utilized to visualize its structure by creating a three-dimensional representation of the embedded surface. In summary, this research contributes to understanding wormholes in modified gravity theories, highlighting the importance of the parameter $λ$ in determining their behavior and properties.
title Finslerian wormhole solution in the framework of modified gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2302.02983