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arXiv:2502.14500·v3·High Energy Physics — Phenomenology

Two-loop corrections to QCD angle from evanescent operator in the BMHV scheme

Tatsuya Banno🇯🇵 · Junji Hisano🇯🇵 · Teppei Kitahara🇯🇵 · Kiyoto Ogawa🇯🇵 · Naohiro Osamura🇯🇵

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Abstract

We study the renormalization of the QCD angle at the two-loop level focusing on divergent and finite -violating contributions from evanescent operators, using dimensional regularization with the BMHV scheme. When one considers the Lagrangian in -dimensional space-time instead of four dimensions in dimensional regularization, evanescent operators that break the chiral symmetry are induced. Consequently, -odd and -odd fermion loops in the BMHV scheme generate evanescent contributions to the QCD angle. We carefully classify the evanescent contributions into two types: one originating from the evanescent operators at the one-loop level and the other directly produced by two-loop calculations. We show that renormalization of the parameters in the BMHV scheme keeps removing those unphysical contributions to the QCD angle at any scale at the two-loop level. We also discuss how the rephasing invariance of the radiative correction to the QCD angle is realized in the BMHV scheme.

Comments: 12 pages, 1 figure

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