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The on-shell effective field theory: a systematic tool to compute power corrections to the hard thermal loops

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arxiv 1603.05514 v4 pith:2E5LTOPM submitted 2016-03-17 hep-ph

classification hep-ph
keywords correctionseffectivefieldtheoryon-shellorderpowersoft
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We show that effective field theory techniques can be efficiently used to compute power corrections to the hard thermal loops (HTL) in a high temperature T expansion. To this aim, we use the recently proposed on-shell effective field theory (OSEFT), which describes the quantum fluctuations around on-shell degrees of freedom. We provide the OSEFT Lagrangian up to third order in the energy expansion for QED, and use it for the computation of power corrections to the retarded photon polarization tensor for soft external momenta. Here soft denotes a scale of order $eT$, where $e$ is the gauge coupling constant. We develop the necessary techniques to perform these computations, and study the contributions to the polarization tensor proportional to $e^2 T^2$, $e^2 T$ and $e^2 T^0$. The first one describes the HTL contribution, the second one vanishes, while the third one provides corrections of order $e^2$ to the soft photon propagation. We check that the results agree with the direct calculation from QED, up to local pieces, as expected in an effective field theory.

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  1. Chiral kinetic theory from the on-shell effective theory: derivation of collision terms

    hep-ph 2019-08 accept novelty 6.0 of 10

    Collision terms of chiral kinetic theory are derived to order 1/E from the on-shell effective field theory, with spin-dependent couplings to circularly polarized photons, and checked against a QED decay rate.

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