Dynamical study of $D^{*}DK$ and $D^{*}D \bar{D}$ systems at quark level
Abstract
Inspired by that Belle\uppercase\expandafter{\romannumeral2} Collaboration recently reported , which can be interpreted as a molecular , we investigated the trihadron system of partner with = in the framework of a chiral quark model. It's widely accepted that the main component of contains the molecular , while the main component of is molecular . Based on these three well-known exotic states, , and , we dynamically investigate and 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 is relatively small, only 0.8 MeV, while the binding energy of 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 ()-(/) structure, in which is close to while as a whole is relatively distant from the third hadron (/), which are similar to the nucleon-electron structure. As a result, we strongly recommend that these bound states and 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}
}