English

Charmful Baryonic B Decays $\bar B^0\to\Lambda_c\bar p$ and $\bar B\to\Lambda_c\bar p\pi(\rho)$

High Energy Physics - Phenomenology 2014-11-17 v2 High Energy Physics - Experiment

Abstract

We study the two-body and three-body charmful baryonic B decays: Bˉ0Λcpˉ\bar B^0\to \Lambda_c\bar p and BˉΛcpˉπ(ρ)\bar B\to \Lambda_c \bar p\pi(\rho). The factorizable W-exchange contribution to Bˉ0Λcpˉ\bar B^0\to\Lambda_c\bar p is negligible. Applying the bag model to evaluate the baryon-to-baryon weak transition matrix element, we find B(Bˉ0Λcpˉ)1.1×105gB0pΣb+/62B(\bar B^0\to\Lambda_c\bar p)\leq 1.1\times 10^{-5}|g_{B^0p\Sigma_b^+}/6|^2 with gB0pΣb+g_{B^0p\Sigma_b^+} being a strong coupling for the decay Σb+Bˉ0p\Sigma_b^+\to \bar B^0 p and hence the predicted branching ratio is well below the current experimental limit. The factorizable contributions to BΛcpˉπB^-\to\Lambda_c\bar p\pi^- can account for the observed branching ratio of order 6×1046\times 10^{-4}. The branching ratio of order 2×1032\times 10^{-3} for BΛcpˉρB^-\to\Lambda_c\bar p\rho^- is larger than that of BΛcpˉπB^-\to\Lambda_c\bar p\pi^- by a factor of about 2.6. We explain why the three-body charmful baryonic B decay has a larger rate than the two-body one, contrary to the case of mesonic B decays.

Keywords

Cite

@article{arxiv.hep-ph/0110263,
  title  = {Charmful Baryonic B Decays $\bar B^0\to\Lambda_c\bar p$ and $\bar B\to\Lambda_c\bar p\pi(\rho)$},
  author = {Hai-Yang Cheng and Kwei-Chou Yang},
  journal= {arXiv preprint arXiv:hep-ph/0110263},
  year   = {2014}
}

Comments

17 pages, 2 figures. Form factors for Lambda_c-p transitions are corrected. Strong couplings are slightly modified. To appear in Phys. Rev. D