Constraints on Lepton Universality Violation from Rare $B$ Decays
Abstract
The LHCb collaboration has very recently released a new study of and () decays, testing lepton universality with unprecedented accuracy using the whole Run 1 and 2 dataset. In addition, the CMS collaboration has recently reported an improved analysis of the branching ratios . While these measurements offer, per se, a powerful probe of New Physics, global analyses of transitions also rely on the assumptions about nonperturbative contributions to the decay matrix elements. In this work, we perform a global Bayesian analysis of New Physics in (semi)leptonic rare decays, paying attention to the role of charming penguins which are difficult to evaluate from first principles. We find data to be consistent with the Standard Model once rescattering from intermediate hadronic states is included. Consequently, we derive stringent bounds on lepton universality violation in (semi)leptonic processes.
Cite
@article{arxiv.2212.10516,
title = {Constraints on Lepton Universality Violation from Rare $B$ Decays},
author = {Marco Ciuchini and Marco Fedele and Enrico Franco and Ayan Paul and Luca Silvestrini and Mauro Valli},
journal= {arXiv preprint arXiv:2212.10516},
year = {2023}
}
Comments
10 pages, 7 figures, 2 tables. Appendix on treatments of hadronic contributions added, version to appear on journal. In loving memory of Enrico Franco, Scientist, Mentor and Friend