English

Dynamical study of $D^{*}DK$ and $D^{*}D \bar{D}$ systems at quark level

High Energy Physics - Phenomenology 2024-04-03 v1

Abstract

Inspired by that Belle\uppercase\expandafter{\romannumeral2} Collaboration recently reported TccT_{cc}, which can be interpreted as a molecular DDDD^{*}, we investigated the trihadron system of TccT_{cc} partner with IJPIJ^{P}=0101^{-} in the framework of a chiral quark model. It's widely accepted that the main component of X(3872)X(3872) contains the molecular DˉD\bar{D}D^{*}, while the main component of Ds0(2317)D_{s0}^{*}(2317) is molecular DKDK. Based on these three well-known exotic states, Tcc(DD)T_{cc} (DD^{*}), X(3872)(DˉD)X(3872) (\bar{D}D^{*}) and Ds0(2317)(DK)D_{s0}^{*}(2317) (DK), we dynamically investigate DDKD^{*}DK and DDDˉDD^{*}\bar{D} systems at quark level to search for possible bound states. The results show that both of them are bound states, in which the binding energy of the molecular state DDKDD^*K is relatively small, only 0.8 MeV, while the binding energy of DDDˉDD^*\bar{D} is up to 1.9 MeV. According to the calculation results of the Root-square-mean distances, the spatial structure of the two systems shows obvious (DDDD^*)-(Dˉ\bar{D}/KK) structure, in which DD is close to DD^* while DDDD^* as a whole is relatively distant from the third hadron (Dˉ\bar{D}/KK), which are similar to the nucleon-electron structure. As a result, we strongly recommend that these bound states DDDˉDD^*\bar{D} and DDKDD^*K are searched for experimentally.

Keywords

Cite

@article{arxiv.2404.02048,
  title  = {Dynamical study of $D^{*}DK$ and $D^{*}D \bar{D}$ systems at quark level},
  author = {Yue Tan and Xuejie Liu and Xiaoyun Chen and Youchang Yang and Hongxia Huang and Jialun Ping},
  journal= {arXiv preprint arXiv:2404.02048},
  year   = {2024}
}