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Predictions and Tests for Semi-leptonic Decays of Beauty Hadrons,

2024/06/08 by E. Di Salvo, Ziad Ajaltouni, Di Salvo, Elvio +3
Physics and Astronomy · #Quantum Chromodynamics and Particle Interactions #Particle physics theoretical and experimental studies #Nuclear physics research studies

paper · pdf · doi:10.48550/arxiv.2406.05456

Abstract

We make predictions and propose tests for the semi-leptonic decays B→ D(*) l νl and Λb→ Λc l νl, with l = e, μ and τ. Preliminarily, we study such processes according to the ℓ-s scheme, which helps interpreting the results of previous analyses. Then, we write the angular distributions of those decays in the helicity formalism and suggest for each decay some tests for distinguishing among the various Dirac operators which may explain the tensions with the standard model. In particular, we propose, for l = e and μ, to study the fully differential distribution. In the cases of the B→ D^* and Λb decays, important physical information can be extracted even after integrating over the momentum of the charged lepton, which is quite suitable for l = τ. Especially, the decay angular distribution of polarized Λb depends on five observables, which assume different values according to the various new-physics interactions; one of these observables is related to the longitudinal polarization of the τ-ντ system, which can be compared with the D^* longitudinal polarization in the B→ D^* decay. Moreover, we analyze the τ anomaly in the branching ratios of the semi-leptonic decays; to this end, we make some assumptions, which have a remarkable predictive power and lead to results in agreement with previous theoretical calculations. Thanks to these assumptions, we combine our present analysis of the Λb decay with the previous ones of the B→ D(*) decays, getting strong constraints on the parameters which characterize the different new-physics operators and an indication on the most likely one.

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