Euler-Heisenberg Lagrangian and photon circular polarization
High Energy Physics - Phenomenology
2012-10-03 v2
Abstract
Considering the effective Euler-Heisenberg Lagrangian, i.e., non-linear photon-photon interactions, we study the circular polarization of electromagnetic radiation based on the time-evolution of Stokes parameters. To the leading order, we solve the Quantum Boltzmann Equation for the density matrix describing an ensemble of photons in the space of energy-momentum and polarization states, and calculate the intensity of circular polarizations. Applying these results to a linear polarized thermal radiation, we calculate the circular polarization intensity, and discuss its possible relevance to the circular polarization intensity of the Cosmic Microwave Background radiation.
Keywords
Cite
@article{arxiv.1104.3555,
title = {Euler-Heisenberg Lagrangian and photon circular polarization},
author = {Iman Motie and She-Sheng Xue},
journal= {arXiv preprint arXiv:1104.3555},
year = {2012}
}
Comments
12 pages, the version to appear in Europhysics Letters