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The $1D$-wave bottom-strange baryons and possible interpretation of $Ξ_{b}(6327)^{0}$ and $Ξ_{b}(6333)^{0}$

Published 11 Feb 2022 in hep-ph | (2202.05426v1)

Abstract: Inspired by the LHCb's newest observation of two new excited $\Xi_b0$ states, we systematically study the strong decays of the low-lying $\lambda$- and $\rho$-modes $1D$-wave $\Xi_{b}$ and $\Xi{'}_{b}$ baryons using the chiral quark model within the $j$-$j$ coupling scheme. Based on the measured masses and strong decay properties of $\Xi_{b}(6327){0}$ and $\Xi_{b}(6333){0}$, we explain the two states as the $\lambda$-mode $1D$ $\Xi_{b}$ states with $ J{P}=3/2{+} $ and $ J{P}=5/2{+} $, respectively. Moreover, under this assignment, another dominant decay channel of $\Xi_{b}(6327){0}$ is $\Xi'b\pi$ and that of $\Xi{b}(6333){0}$ is $\Xi_b*\pi$. Hence, the decay modes $\Xi'b\pi$ and $\Xi_b*\pi$ may be another ideal channels as well to decode the inner structure of $\Xi{b}(6327){0}$ and $\Xi_{b}(6333){0}$, respectively. For other unseen $1D$ $\Xi_b$ and $\Xi'b$ states, our results indicate: (i) $\Xi_b|JP=\frac{3}{2}+,2\rangle{\rho}$ and $\Xi_b|JP=\frac{5}{2}+,2\rangle_{\rho}$ are most likely to be narrow states with a width of $\Gamma\simeq(12-30)$ MeV, and dominantly decay into $\Sigma_bK$ and $\Sigma*_bK$, respectively; (ii) The $1D$ $\Xi'_b$ baryons are not broad states, and the widths vary in the range of $\Gamma\simeq(14-46)$ MeV. These states have a good potential to be observed in their dominant decay processes.

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