Dynamics of Charged Bulk Viscous Collapsing Cylindrical Source With Heat Flux
arXiv:1703.08441 · doi:10.1140/epjc/s10052-017-4813-x
Abstract
In this paper, we have explored the effects of dissipation on the dynamics of charged bulk viscous collapsing cylindrical source which allows the out follow of heat flux in the form of radiations. Misner-Sharp formulism has been implemented to drive the dynamical equation in term of proper time and radial derivatives. We have investigated the effects of charge and bulk viscosity on the dynamics of collapsing cylinder. To determine the effects of radial heat flux, we have formulated the heat transport equations in the context of Mller-Israel-Stewart theory by assuming that thermodynamics viscous/heat coupling coefficients can be neglected within some approximations. In our discussion, we have introduced the viscosity by the standard (non-casual) thermodynamics approach. The dynamical equations have been coupled with the heat transport equation equation, the consequences of resulting coupled heat equation have been analyzed in detail.
17 Pages, no figure
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Cited by in corpus (5)
- Cylindrical Systems in General Relativity
- Models of Collapsing and Expanding Anisotropic Gravitating Source in Theory of Gravity
- Dynamical conditions and causal transport of dissipative spherical collapse in gravity
- Gravitational Perfect Fluid Collapse in Gauss-Bonnet Gravity
- Dynamics of Charged Viscous Dissipative Cylindrical Collapse With Full Causal Approach