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Hard-Loop Effective Action for Anisotropic Plasmas

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arxiv hep-ph/0403256 v3 pith:MHKCFMEV submitted 2004-03-24 hep-ph nucl-th

classification hep-phnucl-th
keywords anisotropicactioneffectivecasedistributionformfunctionshard-thermal-loop
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We generalize the hard-thermal-loop effective action of the equilibrium quark-gluon plasma to a non-equilibrium system which is space-time homogeneous but for which the parton momentum distribution is anisotropic. We show that the manifestly gauge-invariant Braaten-Pisarski form of the effective action can be straightforwardly generalized and we verify that it then generates all n-point functions following from collisionless gauge-covariant transport theory for a homogeneous anisotropic plasma. On the other hand, the Taylor-Wong form of the hard-thermal-loop effective action has a more complicated generalization to the anisotropic case. Already in the simplest case of anisotropic distribution functions, it involves an additional term that is gauge invariant by itself, but nontrivial also in the static limit.

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  1. Collective phenomena in chirally imbalanced medium

    hep-ph 2025-06 conditional novelty 5.0 of 10

    Chirally imbalanced quark-gluon plasma splits transverse gluon modes into circular polarizations, adds instabilities, and makes quarkonium melt faster via a larger Debye mass and decay width.

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