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Radiative corrections to superallowed $\beta$ decays in effective field theory

High Energy Physics - Phenomenology 2024-11-20 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

The accuracy of VudV_{ud} determinations from superallowed β\beta decays critically hinges on control over radiative corrections. Recently, substantial progress has been made on the single-nucleon, universal corrections, while nucleus-dependent effects, typically parameterized by a quantity δNS\delta_\text{NS}, are much less well constrained. Here, we lay out a program to evaluate this correction from effective field theory (EFT), highlighting the dominant terms as predicted by the EFT power counting. Moreover, we compare the results to a dispersive representation of δNS\delta_\text{NS} and show that the expected momentum scaling applies even in the case of low-lying intermediate states. Our EFT framework paves the way towards ab-initio calculations of δNS\delta_\text{NS} and thereby addresses the dominant uncertainty in VudV_{ud}.

Keywords

Cite

@article{arxiv.2405.18469,
  title  = {Radiative corrections to superallowed $\beta$ decays in effective field theory},
  author = {Vincenzo Cirigliano and Wouter Dekens and Jordy de Vries and Stefano Gandolfi and Martin Hoferichter and Emanuele Mereghetti},
  journal= {arXiv preprint arXiv:2405.18469},
  year   = {2024}
}

Comments

7 pages, 1 figure; journal version