A new puzzle in non-leptonic B decays
Abstract
We build a set of new observables using closely related non-leptonic penguin-mediated and decays: , , and together with their CP conjugate partners. These optimised observables are designed to reduce hadronic uncertainties, mainly coming from form factors and power-suppressed infrared divergences, and thus maximize their sensitivity to New Physics (NP). The deviations observed with respect to the SM in the ratios of branching ratios of () and () can be explained by simple NP scenarios involving the Wilson coefficients and (QCD penguin operators) and the coefficient (chromomagnetic operator). The optimised observables for and show distinctive patterns of deviations with respect to their SM predictions under these NP scenarios. The pattern of deviations of individual branching ratios, though affected by significant hadronic uncertainties, suggests that NP is needed both in and transitions. We provide the regions for the Wilson coefficients consistent with both optimised observables and individual branching ratios. The NP scenarios considered to explain the deviations of and can yield deviations up to an order of magnitude among the observables that we introduced for and . Probing these new observables experimentally may confirm the consistency of the deviations already observed and provide a highly valuable hint of NP in the non-leptonic sector.
Keywords
Cite
@article{arxiv.2301.10542,
title = {A new puzzle in non-leptonic B decays},
author = {Aritra Biswas and Sebastien Descotes-Genon and Joaquim Matias and Gilberto Tetlalmatzi-Xolocotzi},
journal= {arXiv preprint arXiv:2301.10542},
year = {2023}
}
Comments
46 pages, 29 figures