English

Disentangling different structures in heavy-light four-quark states

High Energy Physics - Phenomenology 2020-09-30 v2 High Energy Physics - Lattice

Abstract

Models proposed to explain recently discovered heavy-light four-quark states already assume certain internal structures, i.e. the (anti)quark constituents are grouped into diquark/antidiquark clusters, heavy-meson/light-meson clusters (hadrocharmonium) or heavy-light meson molecules. We propose and use an approach to four-quark states based on Dyson-Schwinger and Bethe-Salpeter equations that has the potential to discriminate between these models. We study the masses of heavy-light cqqˉcˉcq\bar{q}\bar{c} and ccqˉqˉcc\bar{q}\bar{q} four-quark states with q=u,d,sq=u,d,s and quantum numbers I(JPC)=0(1++),1(1+),0(0++)I(J^{PC})=0(1^{++}),1(1^{+-}),0(0^{++}) and 1(0+),0(1+),1(1+)1(0^+),0(1^+),1(1^+). We identify the dominant components of the ground states with these quantum numbers and suggest candidates for corresponding experimental states. Most notably, we find strong heavy-light meson-meson and negligible diquark-antidiquark components in all cqqˉcˉcq\bar{q}\bar{c} states, whereas for ccqˉqˉcc\bar{q}\bar{q} states diquarks are present. A potential caveat in the I=0I=0 channels is the necessary but costly inclusion of ccˉc\bar{c} components which is relegated to future work.

Keywords

Cite

@article{arxiv.2003.12407,
  title  = {Disentangling different structures in heavy-light four-quark states},
  author = {Paul C. Wallbott and Gernot Eichmann and Christian S. Fischer},
  journal= {arXiv preprint arXiv:2003.12407},
  year   = {2020}
}

Comments

10 pages, 4 figures, v2: minor corrections, version published in PRD rapid communications

R2 v1 2026-06-23T14:29:18.213Z