Chiral phase transition scenarios from the vector meson extended Polyakov quark meson model
Abstract
Chiral phase transition is investigated in an symmetric vector meson extended linear sigma model with additional constituent quarks and Polyakov loops (extended Polyakov quark meson model). The parameterization of the Lagrangian is done at zero temperature in a hybrid approach, where the mesons are treated at tree-level, while the constituent quarks at 1-loop level. The temperature and baryochemical potential dependence of the two assumed scalar condensates are calculated from the hybrid 1-loop level equations of states. The order of the phase transition along the and axes are determined for various parameterization scenarios. We find that in order to have a first order phase transition at as a function of a light isoscalar particle is needed.
Keywords
Cite
@article{arxiv.1507.02064,
title = {Chiral phase transition scenarios from the vector meson extended Polyakov quark meson model},
author = {Péter Kovács and György Wolf},
journal= {arXiv preprint arXiv:1507.02064},
year = {2015}
}
Comments
6 pages, 2 figures, Presented at Excited QCD 2015 (8-14 March 2015, Tatranska Lomnica, Slovakia)