Standard Model $\mathcal{O}(\alpha)$ renormalization of $g_A$ and its impact on new physics searches
Leendert Hayen

TL;DR
This paper calculates the one-loop radiative corrections to Gamow-Teller beta decays within the Standard Model, revealing significant effects on fundamental constants and resolving discrepancies in CKM matrix element extractions.
Contribution
It provides the first detailed $ ext{O}( ext{α})$ calculation of inner radiative corrections for Gamow-Teller decays, improving precision in fundamental parameter determinations.
Findings
Calculated $ ext{O}( ext{α})$ corrections for axial and vector channels.
Resolved a long-standing tension in $|V_{ud}|$ extraction.
Enhanced understanding of radiative effects on beta decay and CKM unitarity.
Abstract
We present an Standard Model calculation of the inner radiative corrections to Gamow-Teller decays. We find that \textit{a priori} contributions arise from the photonic vertex correction and box diagram. Upon evaluation most elastic contributions vanish due to crossing symmetry or cancellation between isoscalar and isovector photonic contributions, leaving only the polarized parity-odd contribution, i.e., the Gamow-Teller equivalent of the well-known axial box contribution for Fermi decays. We show that weak magnetism contributes significantly to the Born amplitude, and consider additional hadronic contributions at low energy using a holomorphic continuation of the polarized Bjorken sum rule constrained by experimental data. We perform the same procedure for the Fermi inner radiative correction through a combination of the running of…
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