L→ll′l′νlνL in the SM and beyond
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Abstract
The L→ll′l′νlνL decays (L=τ,μ; l,l′=μ,e) in the Standard Model (SM) and in the effective field theory (EFT) description of the weak charged current are studied at low energy, both for polarized and unpolarized L, keeping for the first time l,l′ mass dependence. The discrepancy is clarified between two previous SM calculations improving their precision. The recent 35σ anomaly found in τ→eγeντ could be checked using our precise prediction for the τ→eee eντ decays, which shall be measured analysing already existing data from the first generation B-factories. It is shown how measurements of the di-l′ mass distribution (with appropriate cuts) and T-asymmetries are able to reveal the corresponding lepton flavor violating (LFV) processes without neutrinos in the final state.
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