Radiating Spherical Collapse for an Inhomogeneous Interior Solution

Fuente: arXiv
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Auteurs principaux: Bittencourt, Eduardo, Freitas, Vanessa P, Salim, José M, Santos, Grasiele B
Format: Preprint
Publié: 2018
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author Bittencourt, Eduardo
Freitas, Vanessa P
Salim, José M
Santos, Grasiele B
author_facet Bittencourt, Eduardo
Freitas, Vanessa P
Salim, José M
Santos, Grasiele B
contents We analyze the problem of gravitational collapse considering the matching of an exterior region described by the Vaidya's metric and an interior region described by a spherically symmetric shear-free inhomogeneous geometry sourced by a viscous fluid. We establish initial and final conditions for the process in order that the outcome be a non-singular object, when this is possible, and check how it depends on the fulfillment of the energy conditions. We then apply explicitly the matching procedure to the cases of linear and nonlinear Lagrangians describing electromagnetic fields inside the star, and analyze how the different behaviors for the scale factor of the interior geometry produce singular or nonsingular final stages of the collapse depending on the range where the initial conditions lie.
format Preprint
id arxiv_https___arxiv_org_abs_1806_09433
institution arXiv
publishDate 2018
record_format arxiv
spellingShingle Radiating Spherical Collapse for an Inhomogeneous Interior Solution
Bittencourt, Eduardo
Freitas, Vanessa P
Salim, José M
Santos, Grasiele B
General Relativity and Quantum Cosmology
We analyze the problem of gravitational collapse considering the matching of an exterior region described by the Vaidya's metric and an interior region described by a spherically symmetric shear-free inhomogeneous geometry sourced by a viscous fluid. We establish initial and final conditions for the process in order that the outcome be a non-singular object, when this is possible, and check how it depends on the fulfillment of the energy conditions. We then apply explicitly the matching procedure to the cases of linear and nonlinear Lagrangians describing electromagnetic fields inside the star, and analyze how the different behaviors for the scale factor of the interior geometry produce singular or nonsingular final stages of the collapse depending on the range where the initial conditions lie.
title Radiating Spherical Collapse for an Inhomogeneous Interior Solution
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/1806.09433