arXiv:hep-ph/9909500·v1·High Energy Physics — Phenomenology
QED Effective Action at Finite Temperature: Two-Loop Dominance
Abstract
We calculate the two-loop effective action of QED for arbitrary constant electromagnetic fields at finite temperature T in the limit of T much smaller than the electron mass. It is shown that in this regime the two-loop contribution always exceeds the influence of the one-loop part due to the thermal excitation of the internal photon. As an application, we study light propagation and photon splitting in the presence of a magnetic background field at low temperature. We furthermore discover a thermally induced contribution to pair production in electric fields.
Comments: 34 pages, 4 figures, LaTeX