English

Electrical conductivity of hadronic matter from different possible mesonic and baryonic thermal fluctuations

Nuclear Theory 2017-03-01 v1 High Energy Physics - Phenomenology

Abstract

Electromagnetic current-current correlators in pionic and nucleonic medium have been evaluated in the static limit to obtain electrical conductivities for pion and nucleon components respectively, where former decreases and latter one increases with the variation of temperature TT and baryon chemical potential μN\mu_N. Therefore, total electrical conductivity of pion and nucleon system exhibits a valley structure in the TT-μN\mu_N plane. To get non-divergent and finite values of correlators, finite thermal widths of medium constituents, pion and nucleon have been considered, where these thermal widths have been determined from the in-medium scattering probabilities of pion and nucleon with other mesonic and baryonic resonances, based on effective hadronic model. At μN=0\mu_N=0, the results of present work are more or less agrees with the results of earlier works and its finite μN\mu_N extension show a decreasing nature of electrical conductivity for hadronic medium during spanning from freeze out line to quark-hadron transition line in TT-μN\mu_N plane.

Keywords

Cite

@article{arxiv.1607.01340,
  title  = {Electrical conductivity of hadronic matter from different possible mesonic and baryonic thermal fluctuations},
  author = {Sabyasachi Ghosh},
  journal= {arXiv preprint arXiv:1607.01340},
  year   = {2017}
}