English

A coupled-channel quark model study of possible $Ξ_{cc}^{(*)} K^{(*)}$ molecular states

High Energy Physics - Phenomenology 2026-07-21 v1

Abstract

Inspired by the recent experimental discovery of doubly charmed baryons, we investigate the possible Ξcc()K()\Xi_{cc}^{(*)}K^{(*)} molecular systems within the framework of the quark delocalization color screening model. The energy spectra and scattering processes of the relevant baryon-meson systems are investigated to explore the dynamical properties of the possible molecular states. The spectrum calculations predict three bound states, namely the I(JP)=0(1/2)I(J^P)=0(1/2^{-}) ΞccK\Xi_{cc}K, the I(JP)=0(3/2)I(J^P)=0(3/2^{-}) ΞccK\Xi_{cc}^{*}K, and the I(JP)=0(5/2)I(J^P)=0(5/2^{-}) ΞccK\Xi_{cc}^{*}K^{*} molecular states. The scattering phase shift analysis further confirms two ΞccK\Xi_{cc}K^{*} resonance states with I(JP)=0(1/2)I(J^P)=0(1/2^{-}) and 0(3/2)0(3/2^{-}), which originate from quasi-bound states through channel coupling. In particular, the I(JP)=0(1/2)I(J^P)=0(1/2^{-}) ΞccK\Xi_{cc}K bound state is consistent with previous theoretical studies, making it one of the most promising candidates for future experimental searches.

Keywords

Cite

@article{arxiv.2607.18672,
  title  = {A coupled-channel quark model study of possible $Ξ_{cc}^{(*)} K^{(*)}$ molecular states},
  author = {Ye Yan and Qi Huang and Yuheng Wu and Hongxia Huang and Jialun Ping},
  journal= {arXiv preprint arXiv:2607.18672},
  year   = {2026}
}

Comments

14 pages, 5 figures