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Two-loop HTL pressure at finite temperature and chemical potential

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arxiv 1212.1797 v2 pith:2GY7EATB submitted 2012-12-08 hep-ph nucl-th

Two-loop HTL pressure at finite temperature and chemical potential

classification hep-ph nucl-th
keywords temperaturechemicalpotentialfinitepressuretwo-loopchromodynamicshigh
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate the two-loop pressure of a plasma of quarks and gluons at finite temperature and chemical potential using the hard thermal loop perturbation theory (HTLpt) reorganization of finite temperature/density quantum chromodynamics. The computation utilizes a high temperature expansion through fourth order in the ratio of the chemical potential to temperature. This allows us to reliably access the region of high temperature and small chemical potential. We compare our final result for the two-loop HTLpt pressure at finite temperature and chemical potential with perturbative quantum chromodynamics (QCD) calculations and available lattice QCD results.

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Cited by 2 Pith papers

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  1. One-loop HDL thermodynamics of a strongly magnetized isospin asymmetric cold quark matter

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    In the lowest Landau level, one-loop HDLpt pressure of cold quark matter grows with quark and isospin chemical potentials, and the magnetization is positive, making transverse pressure smaller than longitudinal.

  2. Quark and hybrid stars with renormalization group improvement of NNLO perturbative QCD

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    RGOPT-resummed NNLO pQCD EoS for massive quarks in beta equilibrium is fitted and applied to construct pure quark stars (X=3.08-3.58) and hybrid stars (X~2-2.98) compatible with PSR J0740+6620 and GW190814.