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Constraints on subleading interactions in beta decay Lagrangian

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arxiv 2112.07688 v3 pith:AZRYVZGS submitted 2021-12-14 hep-ph

classification hep-ph
keywords betainteractionssubleadingdecaycoefficientsdatalagrangianmagnetism
verification ladder T0 review T1 audit T2 compute T3 formal
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We discuss the effective field theory (EFT) for nuclear beta decay. The general quark-level EFT describing charged-current interactions between quarks and leptons is matched to the nucleon-level non-relativistic EFT at the O(MeV) momentum scale characteristic for beta transitions. The matching takes into account, for the first time, the effect of all possible beyond-the-Standard-Model interactions at the subleading order in the recoil momentum. We calculate the impact of all the Wilson coefficients of the leading and subleading EFT Lagrangian on the differential decay width in allowed beta transitions. As an example application, we show how the existing experimental data constrain the subleading Wilson coefficients corresponding to pseudoscalar, weak magnetism, and induced tensor interactions. The data display a 3.5 sigma evidence for nucleon weak magnetism, in agreement with the theory prediction based on isospin symmetry.

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  1. On the Coulomb corrections in nuclear beta decay

    hep-ph 2024-12 conditional novelty 7.0 of 10

    A new on-shell spinor-helicity framework computes Coulomb corrections in beta decay, reproducing and updating the D parameter and finding a new SM T-odd correlation.

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