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Strange hidden-charm tetraquarks in constituent quark models

High Energy Physics - Phenomenology 2022-01-05 v1 High Energy Physics - Experiment

Abstract

Inspired by the newly reported Zcs(3985)Z_{cs}(3985)^{-} by the BESIII Collaboration, we systematically investigate the strange hidden-charm tetraquark systems cscˉuˉcs\bar{c}\bar{u} with two structures: meson-meson and diquark-antidiquark. Two quark models: the chiral quark model (ChQM) and the quark delocalization color screening model (QDCSM) are used here. Similar results are obtained in both two quark models. There is no any bound state in either ChQM or QDCSM, which excludes the molecular state explanation (DsD/DsD/DsDD_{s}D^{*}/D_{s}^{*}D/D_{s}^{*}D^{*}) of the reported Zcs(3985)Z_{cs}(3985)^{-}. However, the effective potentials for the diquark-antidiquark cscˉuˉcs\bar{c}\bar{u} systems shows the possibility of some resonance states with mass range of 3916.53964.63916.5\sim 3964.6 MeV for IJP=120+IJ^{P}=\frac{1}{2} 0^{+}, 4008.84091.24008.8\sim 4091.2 MeV for IJP=121+IJ^{P}=\frac{1}{2} 1^{+}, 4246.84418.14246.8\sim 4418.1 MeV for IJP=122+IJ^{P}=\frac{1}{2} 2^{+}. So the observed Zcs(3985)Z_{cs}(3985)^{-} state is possible to be explained as a compact resonance state composed of cscˉuˉcs\bar{c}\bar{u} with IJP=120+IJ^{P}=\frac{1}{2} 0^{+} or IJP=121+IJ^{P}=\frac{1}{2} 1^{+}. The study of the scattering process of corresponding open channels is under way to check this conclusion.

Keywords

Cite

@article{arxiv.2011.12230,
  title  = {Strange hidden-charm tetraquarks in constituent quark models},
  author = {Xin Jin and Xuejie Liu and Yaoyao Xue and Hongxia Huang and Jialun Ping},
  journal= {arXiv preprint arXiv:2011.12230},
  year   = {2022}
}

Comments

9 pages, 5 figures. arXiv admin note: substantial text overlap with arXiv:2006.13745