Charmless $B_{c} \to VV$ decays in the QCD factorization approach
Abstract
In this paper, we studied the charmless ( denotes the light ground vector meson) decays within the framework of QCD factorization. In the evaluation, two different schemes for regulating the end-point divergence are adopted. One (scheme I) is to use parameterization model, which is usually employed in the QCD factorization approach; the other (scheme II) is based on the infrared finite gluon propagator of Cornwall prescription. It is found that, in the annihilation amplitudes, the end-point divergence appears only in the power-suppressed corrections related to the twist-3 distribution amplitudes of -meson. The strength of annihilation amplitudes evaluated in scheme II is generally larger than the one in scheme I. Numerically, in the decay modes considered in this paper, the CKM-favored decays have the relatively large branching fractions, , and hence are likely to be the first observed by the future experiments. In addition, all of the decay modes are dominated by the longitudinal polarization state; numerically, .
Cite
@article{arxiv.1707.03691,
title = {Charmless $B_{c} \to VV$ decays in the QCD factorization approach},
author = {Qin Chang and Na Wang and Junfeng Sun and Lin Han},
journal= {arXiv preprint arXiv:1707.03691},
year = {2017}
}