arXiv:1608.02362·v2·High Energy Physics — Phenomenology
A Natural origin for the LHCb anomalies
Eugenio Megias🇩🇪 · Giuliano Panico🇪🇸 · Oriol Pujolas🇪🇸 · Mariano Quiros🇪🇸
Abstract
The anomalies recently found by the LHCb collaboration in -meson decays seem to point towards the existence of new physics coupled non-universally to muons and electrons. We show that a beyond-the-Standard-Model dynamics with these features naturally arises in models with a warped extra-dimension that aim to solve the electroweak Hierarchy Problem. The attractiveness of our set-up is the fact that the dynamics responsible for generating the flavor anomalies is automatically present, being provided by the massive Kaluza--Klein excitations of the electroweak gauge bosons. The flavor anomalies can be easily reproduced by assuming that the bottom and muon fields have a sizable amount of compositeness, while the electron is almost elementary. Interestingly enough, this framework correlates the flavor anomalies to a pattern of corrections in the electroweak observables and in flavor-changing processes. In particular the deviations in the bottom and muon couplings to the -boson and in flavor-changing observables are predicted to be close to the present experimental bounds, and thus potentially testable in near-future experiments.
Comments: 33 pages, 14 figures, 1 table. References added