English

$\Lambda_b \to \Lambda_c \tau \bar{\nu}_{\tau}$ Decay in the Standard Model and with New Physics

High Energy Physics - Phenomenology 2015-06-10 v4

Abstract

Recently hints of lepton flavor non-universality emerged when the BaBar Collaboration observed deviations from the standard model predictions in R(D())B(BˉD()+τνˉτ)/B(BˉD()+νˉ)R(D^{(*)}) \equiv {\cal B}({\bar B} \to D^{(*)+} \tau^- {\bar\nu}_\tau) / {\cal B}({\bar B} \to D^{(*)+} \ell^- {\bar\nu}_\ell) (=e,μ\ell =e,\mu). Another test of this non-universality can be in the semi leptonic ΛbΛcτνˉτ\Lambda_{b}\to\Lambda_{c}\tau\bar{\nu}_{\tau} 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 q2q^2. In particular, we calculate RΛb=BR[ΛbΛcτνˉτ]BR[ΛbΛcνˉ]R_{\Lambda_{b}} = \frac{BR[\Lambda_b \to \Lambda_c \tau \bar{\nu}_{\tau}]}{BR[\Lambda_b \to \Lambda_c \ell \bar{\nu}_{\ell}]} where \ell represents μ\mu or ee, and find the standard model prediction to be around 0.30.3 while the new physics operators can increase or slightly decrease this value.

Keywords

Cite

@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

R2 v1 2026-06-22T08:37:51.146Z