A $Z^\prime$ Model for $b\to s \ell\bar \ell$ Flavour Anomalies
Abstract
We study the implications of flavour-changing neutral currents (FCNC's) in a model with the electroweak gauge symmetry for several anomalies appearing in induced decays in LHCb data. In this model, and govern the left-handed fermions in the first two generations and the third generation, respectively. The physical and generate the transition at tree level, leading to additional contributions to the semileptonic operators . We find that although - mixing constrains the parameters severely, the model can produce values of in the range determined by Descotes-Genon {\it et. al.} in Ref.~\cite{Descotes-Genon:2015uva} for this scenario to improve the global fit of observables in decays induced by the transition. The boson in this model also generates tree-level FCNC's for the leptonic interactions that can accommodate the experimental central value of . In this case, the model predicts sizeable branching ratios for , , and an enhancement of with respect to its SM value.
Keywords
Cite
@article{arxiv.1601.07328,
title = {A $Z^\prime$ Model for $b\to s \ell\bar \ell$ Flavour Anomalies},
author = {Cheng-Wei Chiang and Xiao-Gang He and German Valencia},
journal= {arXiv preprint arXiv:1601.07328},
year = {2016}
}
Comments
ReTex, 13 pages with two figures. A few typos corrected and several references added