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Nuclear $\beta$ decay as a probe for physics beyond the Standard Model
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abstract
This white paper was submitted to the 2022 Fundamental Symmetries, Neutrons, and Neutrinos (FSNN) Town Hall Meeting in preparation for the next NSAC Long Range Plan. We advocate to support current and future theoretical and experimental searches for physics beyond the Standard Model using nuclear $\beta$ decay.
Forward citations
Cited by 3 Pith papers
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Radial excitations and their potential impact on Fermi $\beta$-decay rates
No-core shell model calculations for tritium show radial excitation contributions to the isospin-symmetry-breaking correction are negative and comparable to 10-20% of the diagonal contribution, suggesting shell-model ...
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Recent Progress in Ab-Initio Nuclear Theory for Precision Physics Searches in Muonic Atoms and Superallowed $\beta$ Decays
Ab initio nuclear theory for two-photon exchange in muonic atoms and the γW box in superallowed β decays shares one hadronic tensor, with recent light-nuclei results impacting charge radii, the helium isotope shift, and Vud.
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The Role of Ab Initio Beta-Decay Calculations in Light Nuclei for Probes of Physics Beyond the Standard Model
A status report showing ab initio beta-decay corrections now reach the 1e-4 level needed for precision Standard-Model tests, with key uncertainties from undetermined EFT low-energy constants.
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