Fuzzy Dark Matter Less-complex Wormhole Structures in Higher-Order Curvature Gravity

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Hauptverfasser: Yousaf, Z., Bamba, Kazuharu, Almutairi, Bander, Bhatti, M. Z., Rizwan, M.
Format: Preprint
Veröffentlicht: 2024
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author Yousaf, Z.
Bamba, Kazuharu
Almutairi, Bander
Bhatti, M. Z.
Rizwan, M.
author_facet Yousaf, Z.
Bamba, Kazuharu
Almutairi, Bander
Bhatti, M. Z.
Rizwan, M.
contents Fuzzy dark matter wormhole solutions coupled with anisotropic matter distribution are explored in higher-order curvature gravity. We derive the shape function for fuzzy wormholes and explore their possible stability. We study the embedding diagrams of the active gravitational mass associated with fuzzy dark matter wormholes by taking a certain shape function. Aiming to highlight the role of higher-order curvature gravity in the modeling of less complex fuzzy wormhole structures, we evaluate the complexity factor, the conservation equation, and null energy conditions. Our study reinforces more importance of uniformly distributed pressure effects throughout the less complex region than the emergence of energy density homogeneity in the stability of fuzzy wormholes. It is shown that the active gravitational mass of the fuzzy wormhole structures varies inversely with the radial distance, thereby suggesting the breaching of energy conditions at some arena of the Einasto index. Furthermore, it is revealed that stable fuzzy dark matter wormhole structures exist in nature in the surroundings of cold dark matter halos and galactic bulges. The important physics understood from our analysis is that in higher-order curvature gravity, feasible geometries of fuzzy dark matter wormholes exist naturally in the environments of different galactic haloes.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08354
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Fuzzy Dark Matter Less-complex Wormhole Structures in Higher-Order Curvature Gravity
Yousaf, Z.
Bamba, Kazuharu
Almutairi, Bander
Bhatti, M. Z.
Rizwan, M.
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Theory
Fuzzy dark matter wormhole solutions coupled with anisotropic matter distribution are explored in higher-order curvature gravity. We derive the shape function for fuzzy wormholes and explore their possible stability. We study the embedding diagrams of the active gravitational mass associated with fuzzy dark matter wormholes by taking a certain shape function. Aiming to highlight the role of higher-order curvature gravity in the modeling of less complex fuzzy wormhole structures, we evaluate the complexity factor, the conservation equation, and null energy conditions. Our study reinforces more importance of uniformly distributed pressure effects throughout the less complex region than the emergence of energy density homogeneity in the stability of fuzzy wormholes. It is shown that the active gravitational mass of the fuzzy wormhole structures varies inversely with the radial distance, thereby suggesting the breaching of energy conditions at some arena of the Einasto index. Furthermore, it is revealed that stable fuzzy dark matter wormhole structures exist in nature in the surroundings of cold dark matter halos and galactic bulges. The important physics understood from our analysis is that in higher-order curvature gravity, feasible geometries of fuzzy dark matter wormholes exist naturally in the environments of different galactic haloes.
title Fuzzy Dark Matter Less-complex Wormhole Structures in Higher-Order Curvature Gravity
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Theory
url https://arxiv.org/abs/2405.08354