中文

$B \to \chi_{c0,2} K$ decays: a model estimation

高能物理 - 唯象学 2015-06-25 v3 高能物理 - 实验

摘要

In this paper, we investigate the vertex corrections and spectator hard scattering contributions to Bχc0,2KB \to \chi_{c0,2}K decays, which has no leading contribution from naive factorization scheme. A non-zero binding energy b=2mcMb=2m_c-M 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 χc0K\chi_{c0}K while too large one for χc2K\chi_{c2}K, as can be seen from the ratio of the branching ratio of B+χc2K+B^+ \to \chi_{c2}K^+ to that of B+χc0K+B^+ \to \chi_{c0} K^+, which is predicted to be 2.150.76+0.632.15^{+0.63}_{-0.76} 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 Λh\Lambda_h, it is possible to accommodate the experimental data. This shows that, for Bχc0,2KB\to \chi_{c0,2}K decays with no factorizable contributions, QCDF seems capable of producing decay rates close to experiments, in contrast to the BJ/ψKB\to J/\psi K decay which is dominated by the factorizable contributions.

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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