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Nonperturbative quark-gluon thermodynamics at finite density

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arxiv 1707.04631 v2 pith:4ENXAUCA submitted 2017-07-14 hep-ph hep-lat

classification hep-phhep-lat
keywords densityfoundcolormagneticcomplexconfinementfiniteoperatornamepolyakov
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abstract

Thermodynamics of the quark-gluon plasma at finite density is studied in the framework of the Field Correlator Method, where thermodynamical effects of Polyakov loops and colormagnetic confinement are taken into account. Having found good agreement with numerical lattice data for zero density, we calculate pressure $P(T,\,\mu)$ for $0 <\mu< 400$ MeV and $150 <T< 1000$ MeV. For the first time the explicit intergral form is found in this region,demonstrating analytic structure in the complex $\mu$ plane. The resulting multiple complex branch points are found at the Roberge-Weiss values of $\operatorname{Im}\,\mu$, with $\operatorname{Re}\,\mu$ defined by the values of Polyakov lines and colormagnetic confinement.

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Cited by 1 Pith paper

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  1. Dense Quark-Gluon Plasma in strong magnetic fields

    hep-ph 2019-08 conditional novelty 6.0 of 10

    Analytic expressions for quark pressure and magnetic susceptibility of dense quark-gluon plasma in strong magnetic fields are derived within the Field Correlator Method, predicting strong paramagnetism.

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