Leptonic Operators for Cabbibo Angle Anomaly with SMEFT RG Evolution
Abstract
The measurements of the Cabibbo--Kobayashi--Maskawa (CKM) elements can be contaminated by new-physics effects. We point out that purely leptonic operators at the high scale can influence semileptonic decays and nuclear beta decay through renormalization group (RG) running, and hence can influence the measurements of . Interestingly, through this mechanism, a single six-dimensional effective operator at the high scale can alleviate the tension due to the Cabibbo angle anomaly, by generating the desired operators at the low scale through RG running. When generated as a result of a model, the non-universal leptonic couplings of this operator can also contribute to the lepton flavor universality violating ratios such as , which would act as stringent constraints on such scenarios. By performing a global fit of the model, we find that it is essential to have non-universal couplings of such a boson to all three generations of leptons.
Cite
@article{arxiv.2108.05614,
title = {Leptonic Operators for Cabbibo Angle Anomaly with SMEFT RG Evolution},
author = {Ashutosh Kumar Alok and Amol Dighe and Shireen Gangal and Jacky Kumar},
journal= {arXiv preprint arXiv:2108.05614},
year = {2023}
}
Comments
5 Pages, 2 Figures, Major changes. Theoretical expressions and corresponding figure revised. The conditions at high scale, required to account for the anomalies, have been modified, v3: matches with the accepted version