Vacuum polarization in Yang-Mills theories with Lorentz violation

Abstract

The renormalizable extension of a pure Yang-Mills theory with Lorentz violation is characterized by the CPT-Even (kF)μ λ and the CPT-Odd (kAF)μ constant Lorentz coefficients. In this paper, the one-loop structure of the theory up to second order in these Lorentz violating coefficients is studied using the BFM-gauge. Results for the diverse beta functions are derived and contrasted with those given in the literature at first order in these parameters. Special emphasis is putted on the beta function β(g), which is studied in both mass-independent and mass-dependent renormalization schemes. It is found that in a mass-independent scheme the (kAF)μ Lorentz coefficient does not contribute to the β(g) function, but it does in a mass-dependent scheme with contributions that are gauge-dependent and IR divergent.

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