Thermal ground state and nonthermal probes
Abstract
The Euclidean formulation of SU(2) Yang-Mills thermodynamics admits periodic, (anti)selfdual solutions to the fundamental, classical equation of motion which possess one unit of topological charge: (anti)calorons. A spatial coarse graining over the central region in a pair of such localised field configurations with trivial holonomy generates an inert adjoint scalar field , effectively describing the pure quantum part of the thermal ground state in the induced quantum field theory. Here we show for the limit of zero holonomy how (anti)calorons associate a temperature independent electric permittivity and magnetic permeability to the thermal ground state of SU(2), the Yang-Mills theory conjectured to underlie photon propagation.
Cite
@article{arxiv.1504.05923,
title = {Thermal ground state and nonthermal probes},
author = {Thierry Grandou and Ralf Hofmann},
journal= {arXiv preprint arXiv:1504.05923},
year = {2016}
}
Comments
15 pages, no figures, v2: moderate changes in text