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Further understanding the nature of $\Omega(2012)$ within a chiral quark model

High Energy Physics - Phenomenology 2023-05-31 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

In our previous works, we have analyzed the two-body strong decays of the low-lying Ω\Omega baryon states within a chiral quark model. The results show that the Ω(2012)\Omega(2012) resonance favors the three-quark state with JP=3/2J^P=3/2^- classified in the quark model. With this assignment, in the present work we further study the three-body strong decay Ω(2012)Ξ(1530)KˉΞπKˉ\Omega(2012)\to \Xi^*(1530)\bar{K} \to \Xi\pi\bar{K} and coupled-channel effects on Ω(2012)\Omega(2012) from nearby channels ΞKˉ\Xi \bar{K}, Ωη\Omega\eta and Ξ(1530)Kˉ\Xi^*(1530)\bar{K} within the chiral quark model as well. It is found that the Ω(2012)\Omega(2012) resonance has a sizeable decay rate into the three-body final state ΞπKˉ\Xi\pi\bar{K}. The predicted ratio RΞKˉΞπKˉ=B[Ω(2012)Ξ(1530)KˉΞπKˉ]/B[Ω(2012)ΞKˉ]12%R_{\Xi\bar{K}}^{\Xi\pi\bar{K}}=\mathcal{B}[\Omega(2012)\to \Xi^*(1530)\bar{K}\to \Xi\pi\bar{K}]/\mathcal{B}[\Omega(2012)\to \Xi\bar{K}]\simeq 12\% is close to the up limit 11%11\% measured by the Belle Collaboration in 2019, however, our predicted ratio is too small to be comparable with the recent data 0.97±0.310.97\pm 0.31. Furthermore, our results show that the coupled-channel effects on the Ω(2012)\Omega(2012) is not large, its components should be dominated by the bare three-quark state, while the proportion of the molecular components is only 16%\sim 16\%. To clarify the nature of Ω(2012)\Omega(2012), the ratio RΞKˉΞπKˉR_{\Xi\bar{K}}^{\Xi\pi\bar{K}} is expected to be tested by other experiments.

Keywords

Cite

@article{arxiv.2209.09398,
  title  = {Further understanding the nature of $\Omega(2012)$ within a chiral quark model},
  author = {Hui-Hua Zhong and Ru-Hui Ni and Mu-Yang Chen and Xian-Hui Zhong and Ju-Jun Xie},
  journal= {arXiv preprint arXiv:2209.09398},
  year   = {2023}
}

Comments

7 pages, 3 figures