Study of $\Lambda_b\rightarrow~ \Lambda l^+l^-$ and $\Lambda_b\rightarrow p l \bar{\nu}$ decays in the Bethe-Salpeter equation approach
Abstract
In our previous work, based on the spin-flavor wave function, we regard and as composed of different quark-diquark configurations and established the Bethe-Salpeter (BS) equations of configurations for quark and scalar diquark. In our present work, we apply this model to calculate the form factors of the semileptonic transitions and within the Standard Model (SM). The decay is especially interesting since it has been measured in CDF and LHCb Collaborations and this rare decay is very sensitive to new physics effects. The decay is a promising mode for the measurement of the Cabibbo-Kobayashi-Maskawa matrix element at the Large Hadron Collider. In our calculations, depending on the ranges of the parameters in the model including the diquark mass and the interaction strength between the quark and the diquark in the kernel of the BS equation, we find that the branching ratio of in our model is consistent with the experimental data and the current experimental results from LHCb agree with the differential branching ratio of from our calculation except at the lager momentum transfer region. This indicates that there is still room for possible new physics effects. We also give comparisions of the total branching ratios of and with those given by other phenomenological methods.
Cite
@article{arxiv.1503.06907,
title = {Study of $\Lambda_b\rightarrow~ \Lambda l^+l^-$ and $\Lambda_b\rightarrow p l \bar{\nu}$ decays in the Bethe-Salpeter equation approach},
author = {Y. Liu and L. -L. Liu and X. -H. Guo},
journal= {arXiv preprint arXiv:1503.06907},
year = {2015}
}