Investigation of Effects of New Physics in $\Lambda_b\to\Lambda_c \tau\bar\nu_\tau$ Decay
Abstract
Recent experimental results of deviate from the standard model (SM) by , suggesting a new physics (NP) that affects the transition. Motivated by this, we investigate the possible NP effects in the decay. For this purpose, assuming the neutrinos are left-handed, we calculate in detail the helicity amplitudes of decays with all possible four-fermion operators. Within the latest results of form factors from lattice QCD calculations, we study these decays in a model-independent manner. The differential and total branching fractions and other observables are calculated. In SM, we obtain the ratio . Supposing that NP only affects the third generation fermions, we present the correlations among , and . We perform a minimum fit of the wilson coefficient of each operator to the latest experimental data of different observables. It is found that the left-handed scalar operator affects the branching fraction remarkably, and the ratio can be enhanced by . For other operators, the ratio amounts to , which is larger than prediction of SM by . Using the fitted values of the wilson coefficients of the single NP operators, we also give a prognosis for the physical observables of . Furthermore, we also study the effects of three typical NP models on . We hope our results can be tested in the current LHCb experiment and the future high energy experiments.
Keywords
Cite
@article{arxiv.1909.10769,
title = {Investigation of Effects of New Physics in $\Lambda_b\to\Lambda_c \tau\bar\nu_\tau$ Decay},
author = {Xiao-Long Mu and Ying Li and Zhi-Tian Zou and Bin Zhu},
journal= {arXiv preprint arXiv:1909.10769},
year = {2019}
}
Comments
24 pages,8 figures