arXiv:1308.4509·v1·High Energy Physics — Phenomenology
Critical Point and Deconfinement from Dyson-Schwinger Equations
Jan Luecker🇩🇪 · Christian S. Fischer🇩🇪 · Leonard Fister🇮🇪 · Jan M. Pawlowski🇩🇪
Abstract
We employ the Dyson-Schwinger equations for quark and gluon propagators in order to study QCD with 2+1 flavours at finite temperature and density. In a suitable truncation for these equations, we determine the position of the critical end-point as well as the deconfinement temperature at all chemical potentials. For the latter, the Polyakov-loop potential is obtained from the QCD propagators. This is possible for the first time at finite chemical potential, with implications for effective models.
Comments: Proceedings for the 8th International Workshop on Critical Point and Onset of Deconfinement (CPOD 2013). 5 pages, 5 figures