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Low-energy Effects of Lepton Flavour Universality Violation

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arxiv 1803.00945 v1 pith:MMAEWUHZ submitted 2018-03-02 hep-ph

classification hep-ph
keywords dataphysicscaseeffectsflavourleptonlow-energysemileptonic
verification ladder T0 review T1 audit T2 compute T3 formal

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The persisting anomalous data in semileptonic B-decays point towards New Physics models exhibiting large sources of Lepton Flavour Universality Violation. In this work we generalise previous studies by considering frameworks which include an enlarged set of semileptonic four-fermion operators invariant under the SM gauge group, with New Physics affecting mainly the third generation. We derive the low-energy effective Lagrangian including the leading electroweak corrections, mandatory to obtain reliable predictions. As a particularly interesting case, we analyse the scenario where the dominant New Physics effects are encoded in the Wilson coefficient C_9, as favoured by global fit analyses of b -> s data. We find that also in this case the stringent experimental bounds on Z-pole observables and tau decays challenge a simultaneous explanation of charged and neutral-current non-standard data.

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Cited by 2 Pith papers

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    Next-to-leading order spurion effects in a minimal lepton flavor deconstruction model induce observable charged lepton flavor violation, lepton flavor universality violation, and electric dipole moments at multi-10 Te...

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