Analyzing new physics in the decays $\bar{B}^0 \to D^{(\ast)}\tau^-\bar\nu_{\tau}$ with form factors obtained from the covariant quark model
Mikhail A. Ivanov, J\"urgen G. K\"orner, Chien-Thang Tran

TL;DR
This paper investigates potential New Physics effects in B meson decays involving tau leptons, using form factors from a covariant quark model to analyze decay rates, angular distributions, and polarization observables.
Contribution
The study introduces a comprehensive analysis of NP effects in $ar{B}^0$ decays, calculating form factors across the full kinematic range and deriving angular distributions to distinguish NP scenarios.
Findings
Constraints on NP operators from $R(D^{(*)})$ measurements.
Derived four-fold angular distribution for cascade decay.
Strategies proposed to differentiate NP contributions.
Abstract
We study possible New Physics (NP) effects in the exclusive decays . We extend the Standard Model (SM) by taking into account right-handed vector (axial), left- and right-handed (pseudo)scalar, and tensor current contributions. The transition form factors are calculated in the full kinematic range by employing a covariant quark model developed by us. We provide constraints on NP operators based on measurements of the ratios of branching fractions and consider the effects of these operators on physical observables in different NP scenarios. We also derive the four-fold angular distribution for the cascade decay $\bar {B}^0\to D^{\ast\,+}(\to…
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