Abstract

In the present work, we analyze the $P$-wave singly-heavy baryon spectrum belonging to $\mathbf{6}_F$ by combining the observations of the heavy baryon states, and restudy the strong decays of the $1P$ wave $\Sigma_b$ states within the $j$-$j$ coupling scheme using the chiral quark model. We obtain that: (i) the structure $\Sigma_b(6097)$ observed in the $\Lambda_b\pi$ final state may arise from the overlapping of $\Sigma_b|J^P=\frac{3}{2}^-,2\rangle$ and $\Sigma_b|J^P=\frac{5}{2}^-,2\rangle$. (ii) The broad structure $\Sigma_b(6072)$ observed in the $\Lambda_b\pi\pi$ final state may arise from the overlapping of $\Sigma_b|J^P=\frac{1}{2}^-,1\rangle$ and $\Sigma_b|J^P=\frac{3}{2}^-,1\rangle$. (iii) The missing state $\Sigma_b|J^P=\frac{1}{2}^-,0\rangle$ is most likely to be a narrow state with a width of $\Gamma\sim10$ MeV, and mainly decays into $\Lambda_b\pi$ channel.

Highlights

  • The LHC experiments have demonstrated their discovery capability of heavy flavored baryons

  • We analyze the P-wave singly heavy baryon spectrum belonging to 6F by combining the observations of the heavy baryon states, and restudy the strong decays of the 1P-wave Σb states within the j-j coupling scheme using the chiral quark model

  • We focus on the strong decay properties of the λ-mode P-wave Σb states in this manuscript

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Summary

INTRODUCTION

The LHC experiments have demonstrated their discovery capability of heavy flavored baryons. The LHCb Collaboration observed four narrow ΩbðXÞ states Ωbð6316Þ, Ωbð6330Þ, Ωbð6340Þ, and Ωbð6350Þ [6], in the Ξ0bK− final state These newly observed heavy baryon states may be good candidates of the P-wave heavy baryons belonging to the flavor sextet 6F, when compared with the predicted masses. The CMS Collaboration observed a broad enhancement around 6070 MeV in the Λ0bπþπ− invariant mass spectrum [34], which was confirmed by the subsequent LHCb experiments with high significance [35]. By combining the newest observations of the heavy baryon states, we give our opinion for establishing a complete P-wave Σb spectrum. The observed structures around 6070 MeV are in the predicted mass region of the λ-mode P-wave Σb states (see Table II).

MASS SPECTRUM ANALYSIS
STRONG DECAY ANALYSIS
SUMMARY

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