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L. Mercolli

Publications and source records attributed to L. Mercolli.

3 recordsLinked to original sources

$τ$ dipole moments via radiative leptonic $τ$ decays

We propose a new method to probe the magnetic and electric dipole moments of the $τ$ lepton using precise measurements of the differential rates of radiative leptonic $τ$ decays at high-luminosity $B$ factories. Possible deviations of these moments from the Standard Model values are analyzed in an effective Lagrangian approach, thus providing model-independent results. Analytic expressions for the relevant non-standard contributions to the differential decay rates are presented. Earlier proposals to probe the $τ$ dipole moments are examined. A detailed feasibility study of our method is performed in the conditions of the Belle and Belle II experiments at the KEKB and Super-KEKB colliders, respectively. This study shows that our approach, applied to the planned full set of Belle II data for radiative leptonic $τ$ decays, has the potential to improve the present experimental bound on the $τ$ anomalous magnetic moment. On the contrary, its foreseen sensitivity is not expected to lower the current experimental limit on the $τ$ electric dipole moment.

hep-ph

Radiative $μ$ and $τ$ leptonic decays at NLO

We present the differential rates and branching ratios of the radiative decays $τ\to l \barν νγ$, with $l=e$ or $μ$, and $μ\to e \barν νγ$ in the Standard Model at next-to-leading order. Radiative corrections are computed taking into account the full depencence on the mass $m_l$ of the final charged leptons, which is necessary for the correct determination of the branching ratios. Only partial agreement is found with previous calculations performed in the $m_l \to 0$ limit. Our results agree with the measurements of the branching ratios $\mathcal{B} (μ\to e \barν νγ)$ and $\mathcal{B} (τ\to μ\barν νγ)$ for a minimum photon energy of 10 MeV in the $μ$ and $τ$ rest frames, respectively. Babar's recent precise measurement of the branching ratio $\mathcal{B} (τ\to e \barν νγ)$, for the same photon energy threshold, differs from our prediction by 3.5 standard deviations.

hep-ph

W-propagator corrections to muon and tau leptonic decays

We derive the corrections induced by the W-boson propagator to the differential rates of the leptonic decay of a polarized muon and tau lepton. Results are presented both for decays inclusive of inner bremsstrahlung as well as for radiative ones, when a photon emitted in the decay process is measured. The numerical effect of these corrections is discussed. The definition of the Fermi constant is briefly reviewed.

hep-ph