Charming new physics in rare B-decays and mixing?
Abstract
We conduct a systematic study of the impact of new physics in quark-level transitions on -physics, in particular rare -decays and -meson lifetime observables. We find viable scenarios where a sizable effect in rare semileptonic -decays can be generated, compatible with experimental indications and with a possible dependence on the dilepton invariant mass, while being consistent with constraints from radiative -decay and the measured width difference. We show how, if the effect is generated at the weak scale or beyond, strong renormalisation-group effects can enhance the impact on semileptonic decays while leaving radiative -decay largely unaffected. A good complementarity of the different -physics observables implies that precise measurements of lifetime observables at LHCb may be able to confirm, refine, or rule out this scenario.
Cite
@article{arxiv.1701.09183,
title = {Charming new physics in rare B-decays and mixing?},
author = {Sebastian Jäger and Matthew Kirk and Alexander Lenz and Kirsten Leslie},
journal= {arXiv preprint arXiv:1701.09183},
year = {2018}
}
Comments
7 pagers, 5 figures (v2: journal version)