Standard Model Predictions for Rare $K$ and $B$ Decays without $|V_{cb}|$ and $|V_{ub}|$ Uncertainties
Abstract
The persistent tensions between inclusive and exclusive determinations of and weaken the power of theoretically clean rare and decays in the search for new physics (NP). We demonstrate how this uncertainty can be practically removed by considering within the SM suitable ratios of various branching ratios. This includes the branching ratios for , , , and . Also , , and the mixing induced CP-asymmetry , all measured already very precisely, play an important role in this analysis. The highlights of our analysis are 16 and independent ratios that often are independent of the CKM arameters or depend only on the angles and in the Unitarity Triangle with already precisely known and to be measured precisely in the coming years by the LHCb and Belle II collaborations. Once Once is measured precisely these 16 ratios taken together are expected to be a powerful tool in the search for new physics. Assuming no NP in and we determine independently of : and . This are the most precise determinations to date. Assuming no NP in allows to obtain analogous results for all decay branching ratios considered in our paper without any CKM uncertainties.
Keywords
Cite
@article{arxiv.2203.10099,
title = {Standard Model Predictions for Rare $K$ and $B$ Decays without $|V_{cb}|$ and $|V_{ub}|$ Uncertainties},
author = {Andrzej J. Buras and Elena Venturini},
journal= {arXiv preprint arXiv:2203.10099},
year = {2022}
}
Comments
9 pages, 2 Figures, CKM Workshop 2021, 22-26 November 2021, Melbourne, Australia and the DISCRETE2020-2021 Conference