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Polyakov loop and gluon quasiparticles: a self-consistent approach to Yang-Mills thermodynamics

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arxiv 1402.6213 v1 pith:VASIHZKB submitted 2014-02-25 hep-ph

Polyakov loop and gluon quasiparticles: a self-consistent approach to Yang-Mills thermodynamics

classification hep-ph
keywords looppolyakovapproachgaugemodelpurequasiparticlethermodynamic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a quasiparticle model for the pure gauge sector of QCD, in which transverse quasigluons propagate in a Polyakov loop background field. By incorporating thermodynamic self-consistency in the approach, we show that our Polyakov loop extended quasiparticle model allows an accurate description of recent lattice results for all the thermodynamic quantities, including the Polyakov loop expectation value, in the deconfined phase. The related quasigluon mass exhibits a distinct temperature dependence, which is connected with the non-perturbative behavior seen in the scaled interaction measure of the pure gauge theory.

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  1. Effective QCD model with consistent quasi-gluon treatment : formulation and application

    hep-ph 2026-06 unverdicted novelty 5.0

    Reformulation of the PNJL model with gluon quasi-particles treated beyond saddle-point approximation to yield a consistent quasiparticle description of QCD thermodynamics.