Search for New Physics through the Observables of Semileptonic Bc+ D++- Decay
Zohaib Aarfi, Qazi Maaz Us Salam, Faisal Munir Bhutta, Ishtiaq Ahmed, M. Ali Paracha
Abstract
Motivated by the current flavor anomalies and the comparatively less explored nature of the b d sector, we present a model-independent study of the rare semileptonic Bc+ D++- (=μ,τ) decay, to investigate its sensitivity to New Physics effects. The analysis incorporates penguin-box contributions, long-distance resonance effects, and the sizable weak-annihilation amplitudes. Using the Bc D transition form factors calculated in the covariant confined quark model and the weak-annihilation form factors obtained within the Bethe--Salpeter approach, we analyze the differential branching fraction, forward-backward asymmetry, longitudinal helicity fraction, and a comprehensive set of normalized angular observables in several one- and two-dimensional New Physics scenarios and compare our results with the Standard Model predictions. Notably, the branching fraction, forward-backward asymmetry, and the normalized angular coefficients such as, I2c, I3, I5, and I6s , show clear sensitivity to New Physics effects. Our results indicate that the decay Bc+ D++- serves as a complementary probe of the flavor structure of New Physics and can therefore be investigated in future measurements at LHCb and other high-luminosity flavor experiments.
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