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Lorentz-violating extension of scalar QED at finite temperature

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arxiv 2306.06959 v2 pith:HWDL6NRP submitted 2023-06-12 hep-th

classification hep-th
keywords evenscalarcorrectionsextensionfinitelorentz-violatingone-looptemperature
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In this work, we calculate the one-loop self-energy corrections to the gauge field in scalar electrodynamics modified by Lorentz-violating terms within the framework of the standard model extension (SME). We focus on both $CPT$-even and $CPT$-odd contributions. The kinetic part of the scalar sector contains a $CPT$-even symmetric Lorentz-breaking tensor, and the interaction terms include a vector contracted with the usual covariant derivative in a gauge-invariant manner. We computed the one-loop radiative corrections using dimensional regularization for both the $CPT$-even and $CPT$-odd cases. Additionally, we employed the Matsubara formalism to account for finite temperature effects.

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  1. Bhabha-like scattering in the Rarita-Schwinger model at finite temperature

    hep-th 2024-12 reject novelty 4.0 of 10

    For a massive Rarita-Schwinger spin-3/2 fermion coupled to photons, the tree-level Bhabha-like differential cross-section is derived at finite temperature, with a claimed T squared high-temperature growth.

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