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Fluctuations and the axial anomaly with three quark flavors

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arxiv 1308.3176 v2 pith:ZVVWL2OA submitted 2013-08-14 hep-ph hep-thnucl-th

classification hep-phhep-thnucl-th
keywords phasequarktransitionanomalyaxialchiralfluctuationsinfluence
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The role of the axial anomaly in the chiral phase transition at finite temperature and quark chemical potential is investigated within a non-perturbative functional renormalization group approach. The flow equation for the grand potential is solved to leading-order in a derivative expansion of a three flavor quark-meson model truncation. The results are compared with a standard and an extended mean-field analysis, which facilitates the exploration of the influence of bosonic and fermionic fluctuations, respectively, on the phase transition. The influence of U(1)_A-symmetry breaking on the chiral transition, the location of a possible critical endpoint in the phase diagram and the quark mass sensitivity is studied in detail.

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