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Baryon number fluctuations in the 2+1 flavor low energy effective model

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arxiv 1809.04233 v2 pith:RQTD2FY3 submitted 2018-09-12 hep-ph

classification hep-ph
keywords baryonfluctuationsnumbercalculatedeffectiveenergyflavormodel
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High order cumulants of the baryon number distribution are calculated in a 2+1 flavor low energy effective model. Quantum fluctuations are encoded through the functional renormalization group approach. The chiral and deconfinement phase transitions are investigated at finite temperature and baryon chemical potential. The equation of state for the QCD matter, fluctuations of the baryon number and the strangeness up to sixth order are calculated, and one finds the results are consistent with those from lattice QCD.

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    A dual neural network quasiparticle model separates electric and magnetic gluon thermal masses from lattice QCD thermodynamics, but the high-temperature mass ratio is imposed by a regularization term.

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