In 2020, the LHCb collaboration reported the exclusive branching fractions for the channels B0s→D(∗)−sμ+νμ for the very first time. In view of these observations, we have recently reported the form factors and branching fraction computations for these channels employing the covariant confined quark model. As different other channels corresponding to b→cℓνℓ have provided the hint for New Physics, the analysis of observables such as forward-backward asymmetry, longitudinal and transverse polarizations across the lepton flavours can serve as one of the important probes for the search for possible New Physics. In present work, we compute these observables for all the lepton flavours and compare our predictions with the other theoretical approaches.
Prediction of various observables for $$B_s^0 \rightarrow D_s^{(*)-}\ell ^+\nu _\ell$$ within covariant confined quark model / Pandya, J. N.; Santorelli, P.; Soni, N. R.. - In: THE EUROPEAN PHYSICAL JOURNAL. SPECIAL TOPICS. - ISSN 1951-6355. - 233:(2024), pp. 2075-2086. [10.1140/epjs/s11734-023-01006-0]
Prediction of various observables for $$B_s^0 \rightarrow D_s^{(*)-}\ell ^+\nu _\ell$$ within covariant confined quark model
P. Santorelli;
2024
Abstract
In 2020, the LHCb collaboration reported the exclusive branching fractions for the channels B0s→D(∗)−sμ+νμ for the very first time. In view of these observations, we have recently reported the form factors and branching fraction computations for these channels employing the covariant confined quark model. As different other channels corresponding to b→cℓνℓ have provided the hint for New Physics, the analysis of observables such as forward-backward asymmetry, longitudinal and transverse polarizations across the lepton flavours can serve as one of the important probes for the search for possible New Physics. In present work, we compute these observables for all the lepton flavours and compare our predictions with the other theoretical approaches.| File | Dimensione | Formato | |
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