We study the strong decays of the newly observed Ξb(6227) assuming that it is a pure ΣbKˉ molecular state. Considering four possible spin-parity assingments JP=1/2± and 3/2±, the partial decay widths of the ΣbKˉ molecular state into ΛbKˉ, Ξbπ, and Ξb′π final states through hadronic loops are evaluated with the help of the effective Lagrangians. In comparison with the LHCb data, the spin-party 1/2− assignment is preferred while those of JP=1/2+ and JP=3/2± are disfavored. In addition, we show that the two allowed decay modes ΛbKˉ and Ξbπ of the Ξb(6227), being a S-wave ΣbKˉ molecular state, have almost equal branching ratios, consistent with the data.
@article{arxiv.1811.10769,
title = {Strong decays of the $\Xi_b(6227)$ as a $\Sigma_b\bar{K}$ molecule},
author = {Yin Huang and Cheng-jian Xiao and Li-Sheng Geng and Jun He},
journal= {arXiv preprint arXiv:1811.10769},
year = {2019}
}