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Correlating Lepton Flavour (Universality) Violation in BB Decays with μeγμ\to eγ using Leptoquarks

Published 26 Jun 2017 in hep-ph and hep-ex | (1706.08511v2)

Abstract: Motivated by the measurements of bs<sup>+<sup>b\to s\ell<sup>+\ell<sup>- transitions, including R(K)R(K) and R(K<sup>)R(K<sup>*), we examine lepton flavour (universality) violation in BB decays and its connections to μeγ\mu\to e\gamma in generic leptoquark models. Considering all 10 representations of scalar and vector leptoquarks under the Standard Model gauge group we compute the tree-level matching for semileptonic bb-quark operators as well as their loop effects in <sup>γ\ell\to\ell<sup>\prime\gamma. In our phenomenological analysis we correlate R(K)R(K), R(K<sup>)R(K<sup>*) and the other bsμ<sup>+μ<sup>b\to s\mu<sup>+\mu<sup>- data to μeγ\mu\to e\gamma and bsμeb\to s\mu e transitions for the three leptoquark representations that generate left-handed currents in bs<sup>+<sup>b\to s\ell<sup>+\ell<sup>- transitions and, therefore, provide a good fit to data. We find that while new physics contributions to muons are required by the global fit, also couplings to electrons can be sizeable without violating the stringent bounds from μeγ\mu\to e\gamma. In fact, if the effect in electrons in bs<sup>+<sup>b\to s\ell<sup>+\ell<sup>- has opposite sign than the effect in muons the bound from μeγ\mu\to e\gamma can always be avoided. However, unavoidable effects in bsμeb\to s\mu e transitions (i.e. BsμeB_s\to\mu e, BKμeB\to K\mu e, etc.) appear which are within the reach of LHCb and BELLE II.

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