Ab initio electroweak corrections to superallowed β decays and their impact on Vud

Open Access
Authors
  • M. Hoferichter
  • E. Mereghetti
Publication date 11-2024
Journal Physical Review C
Article number 055502
Volume | Issue number 110 | 5
Number of pages 38
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract
Radiative corrections are essential for an accurate determination of 𝑉𝑢⁢𝑑 from superallowed 𝛽 decays. In view of recent progress in the single-nucleon sector, the uncertainty is dominated by the theoretical description of nucleus-dependent effects, limiting the precision that can currently be achieved for 𝑉𝑢⁢𝑑. In this work, we provide a detailed account of the electroweak corrections to superallowed 𝛽 decays in effective field theory (EFT), including the power counting, potential and ultrasoft contributions, and factorization in the decay rate. We present a first numerical evaluation of the dominant corrections in light nuclei based on quantum Monte Carlo methods, confirming the expectations from the EFT power counting. Finally, we discuss strategies how to extract from data the low-energy constants that parametrize short-distance contributions and whose values are not predicted by the EFT. Combined with advances in ab initio nuclear-structure calculations, this EFT framework allows one to systematically address the dominant uncertainty in 𝑉𝑢⁢𝑑, as illustrated in detail for the 14O → 14N transition.
Document type Article
Language English
Published at https://doi.org/10.1103/PhysRevC.110.055502
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PhysRevC.110.055502 (Final published version)
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