English

Electric conductivity of hot pion matter

Nuclear Theory 2023-07-19 v2

Abstract

The determination of transport coefficients plays a central role in characterizing hot and dense nuclear matter. Currently, there are significant discrepancies between various calculations of the electric conductivity of hot hadronic matter. In the present work we calculate the electric conductivity of hot pion matter by extracting it from the electromagnetic spectral function, via its zero energy limit at vanishing 3-momentum, within the Vector Dominance Model (VDM). Since within the VDM the photon couples to the hadronic currents primarily through the ρ\rho meson, we use hadronic many-body theory to calculate the ρ\rho-meson's self-energy in hot pion matter, by dressing its pion cloud with thermal π\pi-ρ\rho and π\pi-σ\sigma loops including vertex corrections to maintain gauge invariance. In particular, we analyze the low-energy transport peak of the spectral function, extract its behavior with temperature and compare to (the results of) existing approaches in the literature.

Keywords

Cite

@article{arxiv.2211.08713,
  title  = {Electric conductivity of hot pion matter},
  author = {Joseph Atchison and Ralf Rapp},
  journal= {arXiv preprint arXiv:2211.08713},
  year   = {2023}
}