We analyze data on B→Kμ+μ− and B→K∗μ+μ− decays in the whole dilepton invariant mass spectrum with the aim of disentangling short- vs. long-distance contributions. The sizable long-distance amplitudes from ccˉ narrow resonances are taken into account by employing a dispersive approach. For each available q2=mμμ2 bin and each helicity amplitude an independent determination of the Wilson coefficient C9, describing b→sℓ+ℓ− transitions at short distances, is obtained. The consistency of the C9 values thus obtained provides an a posteriori check of the absence of additional, sizable, long-distance contributions. The systematic difference of these values from the Standard Model expectation supports the hypothesis of a non-standard b→sμ+μ− amplitude of short-distance origin.
@article{arxiv.2401.18007,
title = {Short- vs. long-distance physics in $B\to K^{(*)} \ell^+\ell^-$: a data-driven analysis},
author = {Marzia Bordone and Gino isidori and Sandro Mächler and Arianna Tinari},
journal= {arXiv preprint arXiv:2401.18007},
year = {2024}
}