$B \to \chi_{c0,2} K$ decays: a model estimation
摘要
In this paper, we investigate the vertex corrections and spectator hard scattering contributions to decays, which has no leading contribution from naive factorization scheme. A non-zero binding energy is introduced to regularize the infrared divergence of the vertex part. The spectator diagrams also contain logarithmic and linear infrared divergences, for which we adopt a model dependent parametrization. If we neglect possible strong phases in the hard spectator contributions, we obtain a too small branching ratio for while too large one for , as can be seen from the ratio of the branching ratio of to that of , which is predicted to be in our model, while experimentally it should be about 0.1 or even smaller. But a closer examination shows that, assuming large strong phases difference between the twist-2 and twist-3 spectator terms, together with a slightly larger spectator infrared cutoff parameter , it is possible to accommodate the experimental data. This shows that, for decays with no factorizable contributions, QCDF seems capable of producing decay rates close to experiments, in contrast to the decay which is dominated by the factorizable contributions.
引用
@article{arxiv.hep-ph/0412428,
title = {$B \to \chi_{c0,2} K$ decays: a model estimation},
author = {T. N. Pham and Guohuai Zhu},
journal= {arXiv preprint arXiv:hep-ph/0412428},
year = {2015}
}
备注
13 pages, 1 figure, the version to appear in PLB