English

$QQ\bar{q}\bar{q}$ in a chiral constituent quark model

High Energy Physics - Phenomenology 2021-03-23 v1

Abstract

Inspired by Ξcc\Xi_{cc} reported by LHCb Collaboration and X(5568)X(5568) reported by D0D0 Collaboration, the QQqˉqˉQQ\bar{q}\bar{q} (Q=c,b,sQ=c,b,s, q=u,dq=u,d) tetraquark states, are studied in the present work. With the help of gaussian expansion method, two structures, diquark-antiquark and meson-meson, with all possible color configurations are investigated systematically in a chiral quark model to search for the possible stable states. The results show that there is no bound state in the isovector QQqˉqˉQQ\bar{q}\bar{q} system, while there are rather deep bound states in the isoscalar bbqˉqˉbb\bar{q}\bar{q}, ccqˉqˉcc\bar{q}\bar{q} and bcqˉqˉbc\bar{q}\bar{q} systems. There are also several shallow bound states in QQQQ^{\prime} system. Mixing two structures of diquark-antidiquark and meson-meson can introduce more attractions and convert some unbound isoscalar states into shallow bound states. The large mass of the heavy quark is beneficial to the formation of the bound state. The separations between quarks are calculated to unravel the spacial structure of the system.

Keywords

Cite

@article{arxiv.2004.02106,
  title  = {$QQ\bar{q}\bar{q}$ in a chiral constituent quark model},
  author = {Yue Tan and Weichang Lu and Jialun Ping},
  journal= {arXiv preprint arXiv:2004.02106},
  year   = {2021}
}

Comments

8 pages, 2 figures