Morris-Thorne-type wormhole with global monopole charge and the energy conditions

Fuente: arXiv
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Main Authors: Goswami, Jaydeep, Rahman, Hafizur, Sikdar, Rimi, Parvin, Rina, Ahmed, Faizuddin
Format: Preprint
Published: 2024
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author Goswami, Jaydeep
Rahman, Hafizur
Sikdar, Rimi
Parvin, Rina
Ahmed, Faizuddin
author_facet Goswami, Jaydeep
Rahman, Hafizur
Sikdar, Rimi
Parvin, Rina
Ahmed, Faizuddin
contents In this paper, we investigate Morris-Thorne-type wormholes with global monopole charge using various shape function forms known in the literature. We solve the Einstein field equations incorporating an anisotropic energy-momentum tensor and obtain different physical quantities associated with the matter-content. A crucial aspect of this study is the non-exotic matter distribution, examined through the evaluation of energy conditions, and exploring how different shape functions impact these conditions. Additionally, the anisotropy parameter is calculated to quantify the extent of attractive or repulsive behavior. Our study demonstrates that for different types of shape function forms, the energy conditions are influenced by the global monopole parameter. Our findings provide valuable insights for further theoretical explorations of these fascinating hypothetical structures in the realm of general relativity and beyond.
format Preprint
id arxiv_https___arxiv_org_abs_2407_13793
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Morris-Thorne-type wormhole with global monopole charge and the energy conditions
Goswami, Jaydeep
Rahman, Hafizur
Sikdar, Rimi
Parvin, Rina
Ahmed, Faizuddin
General Relativity and Quantum Cosmology
High Energy Physics - Theory
In this paper, we investigate Morris-Thorne-type wormholes with global monopole charge using various shape function forms known in the literature. We solve the Einstein field equations incorporating an anisotropic energy-momentum tensor and obtain different physical quantities associated with the matter-content. A crucial aspect of this study is the non-exotic matter distribution, examined through the evaluation of energy conditions, and exploring how different shape functions impact these conditions. Additionally, the anisotropy parameter is calculated to quantify the extent of attractive or repulsive behavior. Our study demonstrates that for different types of shape function forms, the energy conditions are influenced by the global monopole parameter. Our findings provide valuable insights for further theoretical explorations of these fascinating hypothetical structures in the realm of general relativity and beyond.
title Morris-Thorne-type wormhole with global monopole charge and the energy conditions
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2407.13793