English

In-medium viscous coefficients of a hot hadronic gas mixture

Nuclear Theory 2017-03-13 v1 High Energy Physics - Phenomenology

Abstract

We estimate the shear and the bulk viscous coefficients for a hot hadronic gas mixture constituting of pions and nucleons. The viscosities are evaluated in the relativistic kinetic theory approach by solving the transport equation in the relaxation time approximation for binary collisions (ππ\pi\pi,πN\pi N and NNNN). Instead of vacuum cross-sections usually used in the literature we employ in-medium scattering amplitudes in the estimation of the relaxation times. The modified cross-sections for ππ\pi\pi and πN\pi N scattering are obtained using one-loop modified thermal propagators for ρ\rho, σ\sigma and Δ\Delta in the scattering amplitudes which are calculated using effective interactions. The resulting suppression of the cross sections at finite temperature and baryon density is observed to significantly affect the TT and μN\mu_N dependence of the viscosities of the system.

Keywords

Cite

@article{arxiv.1703.03584,
  title  = {In-medium viscous coefficients of a hot hadronic gas mixture},
  author = {Utsab Gangopadhyaya and Snigdha Ghosh and Sukanya Mitra and Sourav Sarkar},
  journal= {arXiv preprint arXiv:1703.03584},
  year   = {2017}
}