Recently hints of lepton flavor non-universality emerged when the BaBar Collaboration observed deviations from the standard model predictions in R(D(∗))≡B(Bˉ→D(∗)+τ−νˉτ)/B(Bˉ→D(∗)+ℓ−νˉℓ) (ℓ=e,μ). Another test of this non-universality can be in the semi leptonic Λb→Λcτνˉτ decay. In this work we present predictions for this decay in the standard model and in the presence of new-physics operators with different Lorentz structures. We present the most general four-fold angular distribution for this decay including new physics. For phenomenology, we focus on predictions for the decay rate and the differential distribution in the momentum transfer squared q2. In particular, we calculate RΛb=BR[Λb→Λcℓνˉℓ]BR[Λb→Λcτνˉτ] where ℓ represents μ or e, and find the standard model prediction to be around 0.3 while the new physics operators can increase or slightly decrease this value.
@article{arxiv.1502.07230,
title = {$\Lambda_b \to \Lambda_c \tau \bar{\nu}_{\tau}$ Decay in the Standard Model and with New Physics},
author = {Shanmuka Shivashankara and Wanwei Wu and Alakabha Datta},
journal= {arXiv preprint arXiv:1502.07230},
year = {2015}
}
Comments
15 pages, 4 figures, 3 table. Accepted for publication in Physical review D