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- W1504147511 abstract "Using quasiparticle models and imposing thermodynamic consistency, lattice data for the equation of state of deconfined QCD can be mapped to finite chemical potential. We consider a refinement of existing simple massive quasiparticle models using the nonlocal hard-thermal-loop propagators, and certain next-to-leading-order corrections thereof, to obtain the thermodynamic potential as a function of temperature and chemical potential. At small chemical potential we find that the results for the slope of constant pressure from our main model for two massless quark flavors is in good agreement with recent lattice data for 2+1 flavors while it deviates somewhat from lattice data for two flavors from another group. For zero temperature, we obtain an estimate for the critical chemical potential which is close to that obtained from simpler quasiparticle models." @default.
- W1504147511 created "2016-06-24" @default.
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- W1504147511 date "2003-07-30" @default.
- W1504147511 modified "2023-09-25" @default.
- W1504147511 title "Hard-thermal-loop quasiparticle models of deconfined QCD at finite chemical potential" @default.
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- W1504147511 doi "https://doi.org/10.1103/physrevd.68.025022" @default.
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