arXiv · 1706.00929
New Physics in Flavour Observables
Abstract
LHCb found hints for physics beyond the Standard Model (SM) in $B\to K^*μ^+μ^-$, $R(K)$ and $B_s\toϕμ^+μ^-$. These intriguing hints for NP have recently been confirmed by the LHCb measurement of $R(K^*)$ giving a combined significance for NP above the $5\,σ$ level. In addition, the BABAR, BELLE and LHCb results for $B\to D^{(*)}τν$ also point towards lepton flavour universality (LFU) violating new physics (NP). Furthermore, there is the long-standing discrepancy between the measurement and the theory prediction of the anomalous magnetic moment of the muon ($a_μ$) at the $3\,σ$ level. Concerning NP effects, $b\to sμ^+μ^-$ data can be naturally explained with a new neutral gauge bosons, i.e. a $Z^\prime$ but also with heavy new scalars and fermions contributing via box diagrams. Another promising solution to $b\to sμ^+μ^-$, which can also explain $B\to D^{(*)}τν$, are leptoquarks. Interestingly, leptoquarks provide also a viable explanation of $a_μ$ which can be tested via correlated effects in $Z\toμ^+μ^-$ at future colliders. Considering leptoquark models, we show that an explanation of $B\to D^{(*)}τν$ predicts an enhancement of $b\to sτ^+τ^-$ processes by around three orders of magnitude compared to the SM. In case of a simultaneous explanation of $B\to D^{(*)}τν$ and $b\to sμ^+μ^-$ data, sizable effects in $b\to sτμ$ processes are predicted.
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Andreas Crivellin. 2017-06-03. New Physics in Flavour Observables. https://arxiv.org/abs/1706.00929
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