arXiv · hep-ph/0607178
Calculation of BR($\bar{B}^0\to Λ_{c}^++\bar p)$ in the PQCD Approach
Abstract
We calculate the branching ratio of $\bar{B}^0 \to Λ_c^+ \bar{p}$ in the PQCD approach. Most previous model calculations obtained branching ratios significantly larger than experimental data. We find that the predicted branching ratio for BR$(\bar{B}^0 \to Λ_c^+ \bar{p})$ in the PQCD approach can vary over a range of $(2.3\sim 5.1)\times 10^{-5}$ with the largest uncertainty coming from the parameters in the wave function of $Λ_c$. With the favored values for the parameters in the $Λ_c^+$ wave function, $β= 1$ GeV and $m_q = 0.3$ GeV, the branching ratio is about $2.3\times 10^{-5}$ which is satisfactorily consistent with the value measured by experiments.
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Xiao-Gang He, Tong Li, Xue-Qian Li, Yu-Ming Wang. 2006-10-20. Calculation of BR($\bar{B}^0\to Λ_{c}^++\bar p)$ in the PQCD Approach. https://doi.org/10.1103/physrevd.75.034011
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