D-Dimensional Radiative Plasma: A Kinetic Approach
Abstract
The covariant kinetic approach for the radiative plasma, a mixture of a relativistic moving gas plus radiation quanta (photons, neutrinos, or gravitons) is generalized to D spatial dimensions. The operational and physical meaning of Eckart's temperature is reexamined and the D-dimensional expressions for the transport coefficients (heat conduction, bulk and shear viscosity) are explicitly evaluated to first order in the mean free time of the radiation quanta. Weinberg's conclusion that the mixture behaves like a relativistic imperfect simple fluid (in Eckart's formulation) depends neither on the number of spatial dimensions nor on the details of the collisional term. The case of Thomson scaterring is studied in detail, and some consequences for higher dimensional cosmologies are also discussed.
Cite
@article{arxiv.gr-qc/9610072,
title = {D-Dimensional Radiative Plasma: A Kinetic Approach},
author = {A. Maia and J. A. S. Lima},
journal= {arXiv preprint arXiv:gr-qc/9610072},
year = {2008}
}
Comments
28 pages, 1 figure, uses REVTEX