Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity

The idea of this article is to examine the effects on dynamics of dissipative gravitational collapse in nonstatic cylindrical symmetric geometry by using Misner-Sharp concept in framework of metric f(R) gravity theory. In this interest, we extended our study to the dissipative dark source case in bo...

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Main Authors: G. Abbas, H. Nazar
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/9250786
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author G. Abbas
H. Nazar
author_facet G. Abbas
H. Nazar
author_sort G. Abbas
collection DOAJ
description The idea of this article is to examine the effects on dynamics of dissipative gravitational collapse in nonstatic cylindrical symmetric geometry by using Misner-Sharp concept in framework of metric f(R) gravity theory. In this interest, we extended our study to the dissipative dark source case in both forms of heat flow and the free radiation streaming. Moreover, the role of different quantities such as heat flux, bulk, and shear viscosity in the dynamical equation is evaluated in thorough version. The dynamical equation is then coupled with full causal transportation equations in the context of Israel-Stewart formalism. The present scheme explains the physical consequences of the gravitational collapse and that is given in the decreasing form of inertial mass density which depends on thermodynamics viscous/heat coupling factors in background of f(R) theory of gravity. It is very interesting to tell us that the motives of this theory are reproduced for f(R)=R into general theory of relativity that has been done earlier.
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spelling doaj-art-32d78218d6c44cbd989f1a6d22112b7d2025-02-03T01:01:38ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/92507869250786Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) GravityG. Abbas0H. Nazar1Department of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanDepartment of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanThe idea of this article is to examine the effects on dynamics of dissipative gravitational collapse in nonstatic cylindrical symmetric geometry by using Misner-Sharp concept in framework of metric f(R) gravity theory. In this interest, we extended our study to the dissipative dark source case in both forms of heat flow and the free radiation streaming. Moreover, the role of different quantities such as heat flux, bulk, and shear viscosity in the dynamical equation is evaluated in thorough version. The dynamical equation is then coupled with full causal transportation equations in the context of Israel-Stewart formalism. The present scheme explains the physical consequences of the gravitational collapse and that is given in the decreasing form of inertial mass density which depends on thermodynamics viscous/heat coupling factors in background of f(R) theory of gravity. It is very interesting to tell us that the motives of this theory are reproduced for f(R)=R into general theory of relativity that has been done earlier.http://dx.doi.org/10.1155/2018/9250786
spellingShingle G. Abbas
H. Nazar
Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
Advances in High Energy Physics
title Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
title_full Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
title_fullStr Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
title_full_unstemmed Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
title_short Dynamics of Dissipative Viscous Cylindrical Collapse with Full Causal Approach in f(R) Gravity
title_sort dynamics of dissipative viscous cylindrical collapse with full causal approach in f r gravity
url http://dx.doi.org/10.1155/2018/9250786
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AT hnazar dynamicsofdissipativeviscouscylindricalcollapsewithfullcausalapproachinfrgravity