English

The singly-charmed pentaquark molecular states via the QCD sum rules

High Energy Physics - Phenomenology 2023-09-12 v2

Abstract

In this work, we systematically investigate the singly-charmed pentaquark molecular states D()ND^{(*)}N, D()Ξ()D^{(*)}\Xi^{(*)} and Ds()Ξ()D_s^{(*)}\Xi^{(*)} with the QCD sum rules by carrying out the operator product expansion up to the vacuum condensates of dimension 13 and taking fully account of the light-flavor SU(3)SU(3) breaking effects. The numerical results favor assigning the Ωc(3185)\Omega_c(3185) as the DΞD\Xi molecular state with the JP=12J^P=\frac{1}{2}^- and I,I3=0,0| I,I_3 \rangle=| 0,0 \rangle, assigning the Ωc(3327)\Omega_c(3327) as the DΞD^*\Xi molecular state with the JP=32J^P=\frac{3}{2}^- and I,I3=0,0|I,I_3 \rangle=| 0,0 \rangle, assigning the Σc(2800)\Sigma_c(2800) as the DNDN molecular state with the JP=12J^P=\frac{1}{2}^- and I,I3=1,0| I,I_3 \rangle=| 1,0 \rangle, and assigning the Λc(2940)/Λc(2910)\Lambda_c(2940)/\Lambda_c(2910) as the DND^*N molecular state with the JP=32J^P=\frac{3}{2}^- and I,I3=0,0| I,I_3 \rangle=| 0,0 \rangle. Other potential molecule candidates are also predicted, which may be observed in future experiments. For example, we can search for the DΞD\Xi and DΞD^*\Xi molecular states with the isospin I,I3=1,±1| I,I_3 \rangle=| 1,\pm1 \,\rangle in the Ξc+Kˉ0\Xi_c^+\bar{K}^0 and Ξc0Kˉ\Xi_c^0\bar{K}^- mass spectrum respectively in the future, which could shed light on the nature of the Ωc(3185/3327)\Omega_c(3185/3327).

Keywords

Cite

@article{arxiv.2307.08926,
  title  = {The singly-charmed pentaquark molecular states via the QCD sum rules},
  author = {Qi Xin and Xiao-Song Yang and Zhi-Gang Wang},
  journal= {arXiv preprint arXiv:2307.08926},
  year   = {2023}
}

Comments

23 pages, 6 figures