The Intense Radiation Gas
High Energy Physics - Phenomenology
2008-11-26 v2
Abstract
We present a new dispersion relation for photons that are nonlinearly interacting with a radiation gas of arbitrary intensity due to photon-photon scattering. It is found that the photon phase velocity decreases with increasing radiation intensity, it and attains a minimum value in the limit of super-intense fields. By using Hamilton's ray equations, a self-consistent kinetic theory for interacting photons is formulated. The interaction between an electromagnetic pulse and the radiation gas is shown to produce pulse self-compression and nonlinear saturation. Implications of our new results are discussed.
Cite
@article{arxiv.hep-ph/0410203,
title = {The Intense Radiation Gas},
author = {M. Marklund and P. K. Shukla and B. Eliasson},
journal= {arXiv preprint arXiv:hep-ph/0410203},
year = {2008}
}
Comments
7 pages, 1 figure, version to appear in Europhys. Lett