Viscous dissipative effects in isotropic brane cosmology
Abstract
We consider the dynamics of a viscous cosmological fluid in the generalized Randall-Sundrum model for an isotropic brane. To describe the dissipative effects we use the Israel-Hiscock-Stewart full causal thermodynamic theory. In the limiting case of a stiff cosmological fluid with pressure equal to the energy density, the general solution of the field equations can be obtained in an exact parametric form for a cosmological fluid with constant bulk viscosity and with a bulk viscosity coefficient proportional to the square root of the energy density, respectively. The obtained solutions describe generally non-inflationary brane worlds, starting from a singular state. During this phase of evolution the comoving entropy of the Universe is an increasing function of time, and thus a large amount of entropy is created in the brane world due to viscous dissipative processes.
Cite
@article{arxiv.hep-th/0106263,
title = {Viscous dissipative effects in isotropic brane cosmology},
author = {Chiang-Mei Chen and T. Harko and M. K. Mak},
journal= {arXiv preprint arXiv:hep-th/0106263},
year = {2008}
}
Comments
15 pages, 11 figures