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Hydrodynamization and non-equilibrium Green's functions in kinetic theory

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arxiv 2004.06751 v1 pith:MGJBDONT submitted 2020-04-14 hep-ph cond-mat.stat-mechhep-thnucl-th

classification hep-phcond-mat.stat-mechhep-thnucl-th
keywords functionsgreenkineticnon-equilibriumtheorytimeaddressenergy
verification ladder T0 review T1 audit T2 compute T3 formal
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Non-equilibrium Green's functions provide an efficient way to describe the evolution of the energy-momentum tensor during the early time pre-equilibrium stage of high-energy heavy ion collisions. Besides their practical relevance they also provide a meaningful way to address the question when and to what extent a hydrodynamic description of the system becomes applicable. Within the kinetic theory framework we derive a new method to calculate time dependent non-equilibrium Green's functions describing the evolution of energy and momentum perturbations on top of an evolving far-from-equilibrium background. We discuss the approach towards viscous hydrodynamics along with the emergence of various scaling phenomena for conformal systems. By comparing our results obtained in the relaxation time approximation to previous calculations in Yang-Mills kinetic theory, we further address the question which macroscopic features of the energy momentum tensor are sensitive to the underlying microscopic dynamics.

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  1. Bremsstrahlung photon contributions to parton energy loss at high virtuality ($Q^2$) : a perturbative calculation at $O(\alpha_{s} \alpha_{em})$

    hep-ph 2025-02 conditional novelty 7.0 of 10

    A first perturbative derivation of medium-induced photon bremsstrahlung kernels at O(alpha_s alpha_em) from high-virtuality quarks, with heavy quark masses and fermion-boson conversion.

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