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Transport coefficients of quasi-particle models within a new relaxation time approximation of the Boltzmann equation

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arxiv 2203.15571 v2 pith:HQQKLGVX submitted 2022-03-29 nucl-th hep-phhep-th

Transport coefficients of quasi-particle models within a new relaxation time approximation of the Boltzmann equation

classification nucl-th hep-phhep-th
keywords relaxationtimetransportcoefficientsmatchingpropertiestheoryapproximation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the transport properties of a kinetic theory model that is tuned to describe the thermodynamic properties of QCD at zero chemical potential using a new formulation of the relaxation time approximation. In contrast to previous approaches, the latter is constructed to preserve the fundamental properties of the collision term of the Boltzmann equation for any energy-dependence of the relaxation time. A novel choice of matching conditions is implemented to ensure that the background mean-field depends only on the temperature even when the system is out of equilibrium. We provide a consistent analysis of how the transport coefficients of relativistic Navier-Stokes theory vary with the energy dependence of the relaxation time. We also show that the entropy production of this theory is consistent with the second law of thermodynamics and verify that it is independent of the matching conditions employed. We used this fact to calculate the matching independent combination of transport coefficients.

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    In a simplified relativistic gas model, eight alternative Kubo formulas for viscosity give identical values, supporting the new order-of-limits method.