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Phases of QCD: Lattice thermodynamics and a field theoretical model

Claudia RattiMichael A. ThalerW. Weise

Abstract

We investigate three-color QCD thermodynamics at finite quark chemical potential. Lattice QCD results are compared with a generalized Nambu Jona-Lasinio model in which quarks couple simultaneously to the chiral condensate and to a background temporal gauge field representing Polyakov loop dynamics. This so-called PNJL model thus includes features of both deconfinement and chiral symmetry restoration. The parameters of the Polyakov loop effective potential are fixed in the pure-gauge sector. The chiral condensate and the Polyakov loop as functions of temperature and quark chemical potential are calculated by minimizing the thermodynamic potential of the system. The resulting equation of state, (scaled) pressure difference and quark number density at finite quark chemical potential are then confronted with corresponding Lattice QCD data.

High-Energy Particle Collisions ResearchQuantum Chromodynamics and Particle InteractionsPhysics of Superconductivity and MagnetismDeconfinementPhysicsQuantum chromodynamicsQuarkLattice QCDParticle physicsGauge theoryLattice gauge theoryLattice (music)Quantum electrodynamics

Funding

  • Lawrence Berkeley National Laboratory
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816
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Cited by
QCD and strongly coupled gauge theories: challenges and perspectives
The European Physical Journal C · 2014 · 526 citations
References
NJL-model analysis of dense quark matter
Physics Reports · 2005 · 1,412 citations
QCD phenomenology based on a chiral effective Lagrangian
Physics Reports · 1994 · 1,559 citations
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