English

The quark susceptibility in a generalized dynamical quasiparticle model

High Energy Physics - Phenomenology 2016-05-04 v1 Nuclear Theory

Abstract

The quark susceptibility χq\chi_q at zero and finite quark chemical potential provides a critical benchmark to determine the quark-gluon-plasma (QGP) degrees of freedom in relation to the results from lattice QCD (lQCD) in addition to the equation of state and transport coefficients. Here we extend the familiar dynamical-quasiparticle model (DQPM) to partonic propagators that explicitly depend on the three-momentum with respect to the partonic medium at rest in order to match perturbative QCD (pQCD) at high momenta. Within the extended dynamical-quasi-particle model (DQPM^*) we reproduce simultaneously the lQCD results for the quark number density and susceptibility and the QGP pressure at zero and finite (but small) chemical potential μq\mu_q. The shear viscosity η\eta and the electric conductivity σe\sigma_e from the extended quasiparticle model (DQPM^*) also turn out in close agreement with lattice results for μq\mu_q =0. The DQPM^*, furthermore, allows to evaluate the momentum pp, temperature TT and chemical potential μq\mu_q dependencies of the partonic degrees of freedom also for larger μq\mu_q which are mandatory for transport studies of heavy-ion collisions in the regime 5 GeV <sNN<< \sqrt{s_{NN}} < 10 GeV.

Keywords

Cite

@article{arxiv.1512.06909,
  title  = {The quark susceptibility in a generalized dynamical quasiparticle model},
  author = {Hamza Berrehrah and Wolfgang Cassing and Elena Bratkovskaya and Thorsten Steinert},
  journal= {arXiv preprint arXiv:1512.06909},
  year   = {2016}
}

Comments

12 pages, 11 figures

R2 v1 2026-06-22T12:15:31.404Z