$\bar B_c \to \eta_c$, $\bar B_c \to J/\psi$ and $\bar B \to D^{(*)}$ semileptonic decays including new physics
N. Penalva, E. Hern\'andez, J. Nieves

TL;DR
This paper analyzes semileptonic decays of B mesons and baryons to distinguish new physics scenarios, highlighting the effectiveness of certain observables and decay channels in identifying deviations from lepton flavor universality.
Contribution
It extends a formalism to analyze various B meson and baryon semileptonic decays, identifying which observables are most effective for probing new physics.
Findings
$ar B_c o au$ decay observables are more effective than $ar B_c o J/ au$ for NP discrimination.
$ar B o D^{(*)}$ and $ar B_c o ext{charmonium}$ decay observables show similar behaviors.
Certain decay channels provide better sensitivity to new physics scenarios.
Abstract
We apply the general formalism derived in N. Penalva et al. [Phys. Rev. D 101, 113004 (2020)] to the semileptonic decay of pseudoscalar mesons containing a quark. While present data give the strongest evidence in favor of lepton flavor universality violation, the observables that are normally considered are not able to distinguish between different new physics (NP) scenarios. In the above reference we discussed the relevant role that the various contributions to the double differential decay widths and could play to this end. Here is the product of the two hadron four-velocities, is the angle made by the final lepton and final hadron three-momenta in the center of mass of the final two-lepton system, and is the final charged lepton energy in the laboratory system. The…
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