中文

Classifying the hidden-charm pentaquarks via a flavor mixing scheme

高能物理 - 唯象学 2026-07-01 v1 高能物理 - 实验

摘要

In this work, we propose a scheme to classify the molecular states consisting of ground single-charm baryons (Λc\Lambda_c, Ξc\Xi_c, Σc()\Sigma_c^{(*)}, Ξc()\Xi_c^{\prime(*)}, Ωc()\Omega_c^{(*)}) and Dˉ()/Dˉs()\bar{D}^{(*)}/\bar{D}_s^{(*)} mesons. Within this framework, all considered baryon-meson systems are categorized according to the flavor components of their light degrees of freedom. We briefly illustrate how this classification scheme can consistently explain the experimentally observed PcP_c and PcsP_{cs} states. This framework also predicts the existences of single-strange and double-strange hidden-charm bound states. The attractive interactions of these states arise from channel mixing between Σc()Dˉs()\Sigma_c^{(*)}\bar{D}_s^{(*)} and Ξc()Dˉ()\Xi_c^{\prime(*)}\bar{D}^{(*)} for single-strange systems, and mixing between Ξc()Dˉs()\Xi_c^{\prime(*)}\bar{D}_s^{(*)} and Ωc()Dˉ()\Omega_c^{(*)}\bar{D}^{(*)} for double-strange systems, respectively. Using parameters fitted from the measured PcP_c and PcsP_{cs} states, we systematically present the predicted mass spectra for these single- and double-strange hidden-charm bound states.

引用

@article{arxiv.2607.00411,
  title  = {Classifying the hidden-charm pentaquarks via a flavor mixing scheme},
  author = {Kan Chen and Bo Wang},
  journal= {arXiv preprint arXiv:2607.00411},
  year   = {2026}
}

备注

13 pages, 5 figures, 6 tables