English

Hidden-bottom and -charm hexaquark states in QCD sum rules

High Energy Physics - Phenomenology 2020-02-18 v2

Abstract

In this paper, we investigate the spectra of the prospective hidden-bottom and -charm hexaquark states with quantum numbers JPC=0++J^{PC }= 0^{++}, 0+0^{-+}, 1++1^{++} and 11^{--} in the framework of QCD sum rules. By constructing appropriate interpreting currents, the QCD sum rules analyses are performed up to dimension 12 of the condensates. Results indicate that there exist two possible baryonium states in bb-quark sector with masses 11.84±0.2211.84 \pm 0.22 GeV and 11.72±0.2611.72 \pm 0.26 GeV for 0++0^{++} and 11^{--}, respectively. The corresponding hidden-charm partners are found lying respectively at 5.19±0.245.19 \pm 0.24 GeV and 4.78±0.234.78 \pm 0.23 GeV. Note that these baryonium states are all above the dibaryon thresholds, which enables their dominant decay modes could be measured at BESIII, BELLEII, and LHCb detectors.

Keywords

Cite

@article{arxiv.1912.12046,
  title  = {Hidden-bottom and -charm hexaquark states in QCD sum rules},
  author = {Bing-Dong Wan and Liang Tang and Cong-Feng Qiao},
  journal= {arXiv preprint arXiv:1912.12046},
  year   = {2020}
}

Comments

17 pages, 3 figures