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Main Authors: Agrawal, A. S., Zerbini, Sergio, Mishra, B.
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2406.01241
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author Agrawal, A. S.
Zerbini, Sergio
Mishra, B.
author_facet Agrawal, A. S.
Zerbini, Sergio
Mishra, B.
contents In the paper, only Static Spherically Symmetric space-times in four dimensions are considered within modified gravity models. The non-singular static metrics, including black holes not admitting a de Sitter core in the center and traversable wormholes, are reconsidered within a class of higher-order $F(R)$, satisfying the constraints $F(0)=\frac{dF}{dR}(0)=0$. Furthermore, by making use of the so-called effective field theory formulation of gravity, the quantum corrections to Einstein-Hilbert's action due to higher-derivative terms related to curvature invariants are investigated. In particular, in the case of Einstein-Hilbert action plus cubic curvature Goroff-Sagnotti contribution, the second-order correction in the Goroff-Sagnotti coupling constant is computed. In general, it is shown that the effective metrics, namely Schwarzschild expression plus small quantum corrections, are related to black holes and not to traversable wormholes. In this framework, within the approximation considered, the resolution of singularity for $r=0$ is not accomplished. The related properties of these solutions are investigated.
format Preprint
id arxiv_https___arxiv_org_abs_2406_01241
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Black Holes and Wormholes Beyond Classical General Relativity
Agrawal, A. S.
Zerbini, Sergio
Mishra, B.
General Relativity and Quantum Cosmology
In the paper, only Static Spherically Symmetric space-times in four dimensions are considered within modified gravity models. The non-singular static metrics, including black holes not admitting a de Sitter core in the center and traversable wormholes, are reconsidered within a class of higher-order $F(R)$, satisfying the constraints $F(0)=\frac{dF}{dR}(0)=0$. Furthermore, by making use of the so-called effective field theory formulation of gravity, the quantum corrections to Einstein-Hilbert's action due to higher-derivative terms related to curvature invariants are investigated. In particular, in the case of Einstein-Hilbert action plus cubic curvature Goroff-Sagnotti contribution, the second-order correction in the Goroff-Sagnotti coupling constant is computed. In general, it is shown that the effective metrics, namely Schwarzschild expression plus small quantum corrections, are related to black holes and not to traversable wormholes. In this framework, within the approximation considered, the resolution of singularity for $r=0$ is not accomplished. The related properties of these solutions are investigated.
title Black Holes and Wormholes Beyond Classical General Relativity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2406.01241