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Renormalization Scheme Dependence of $\beta$-Functions In Lorentz-Violating Quantum Field Theory

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arxiv 2110.08646 v2 pith:AIICMX3U submitted 2021-10-16 hep-th

classification hep-th
keywords renormalizationbetadependencedifferentfieldfunctionsgroupkind
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abstract

Effective quantum field theories that allow for the possibility of Lorentz symmetry violation can sometimes also include redundancies of description in their Lagrangians. Explicit calculations in a Lorentz-violating generalization of Yukawa theory show that when this kind of redundancy exists, different renormalization schemes may lead to different expressions for the renormalization group $\beta$-functions, even at only one-loop order. However, the renormalization group scaling of physically observable quantities appears not to share this kind of scheme dependence.

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  1. Overlapping resonance branches of a gauge-invariant Lorentz-violating massive vector

    hep-ph 2026-08 conditional novelty 5.0 of 10

    A Lorentz-violating massive vector field develops two overlapping resonance branches, and the second branch's contribution to fermion annihilation can be energy-enhanced in boosted near-parallel configurations.

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