English

Molecular state interpretation of charmed baryons in the quark model

High Energy Physics - Phenomenology 2022-11-23 v1 Nuclear Theory

Abstract

Stimulated by the observation of Λc(2910)+\Lambda_c(2910)^+ by the Belle Collaboration, the SS-wave qqqqˉc (q=u or d)qqq\bar{q}c~(q=u~\text{or}~d) pentaquark systems with II = 0, JPJ^P = 12, 32and 52\frac{1}{2}^-,~\frac{3}{2}^- and~\frac{5}{2}^- are investigated in the framework of quark delocalization color screening model(QDCSM). The real-scaling method is utilized to check the bound states and the genuine resonance states. The root mean square of cluster spacing is also calculated to study the structure of the states and estimate if the state is resonance state or not. The numerical results show that Λc(2910)\Lambda_{c}(2910) cannot be interpreted as a molecular state, and Σc(2800)\Sigma_{c}(2800) cannot be explained as the NDND molecular state with JP=1/2J^P=1/2^-. Λc(2595)\Lambda_{c}(2595) can be interpreted as the molecular state with JP=12J^P=\frac{1}{2}^- and the main component is Σcπ\Sigma_{c}\pi. Λc(2625)\Lambda_{c}(2625) can be interpreted as the molecular state with JP=32J^P=\frac{3}{2}^- and the main component is Σcπ\Sigma_{c}^{*}\pi. Λc(2940)\Lambda_{c}(2940) is likely to be interpreted as a molecular state with JP=3/2J^P=3/2^-, and the main component is NDND^{*}. Besides, two new molecular states are predicted, one is the JP=3/2J^P=3/2^- Σcρ\Sigma_{c}\rho resonance state with the mass around 3140 MeV, another one is the JP=52J^P=\frac{5}{2}^- Σcρ\Sigma_{c}^*\rho with the mass of 3188.3 MeV.

Keywords

Cite

@article{arxiv.2211.12129,
  title  = {Molecular state interpretation of charmed baryons in the quark model},
  author = {Ye Yan and Xiaohuang Hu and Yuheng Wu and Hongxia Huang and Jialun Ping and Youchang Yang},
  journal= {arXiv preprint arXiv:2211.12129},
  year   = {2022}
}

Comments

12 pages, 3 figures