Dynamical study of $T_{ss}$ systems at a chiral quark model
Abstract
Since the discovery of by LHCb, there has been considerable interest in and its heavy-flavor partners. However, the study of its strange partner has been largely overlooked. Within the framework of the chiral quark model, we conducted a systematic study of the bound states of utilizing the Gaussian Expansion Method. Considering all physical channels with , including molecular and diquark structures. Our calculations revealed that upon considering the coupling between diquarks and molecular states, we identified a deep bound state with a bounding energy of 60 MeV, primarily composed of . Using the model, we calculated the decay width of within the bound state, which is approximated as the decay width of the bound state in the system. The results indicate that due to the effect of binding energy, the decay width of in is approximately MeV smaller than that of in vacuum. Additionally, resonance state calculations were performed. Utilizing the real-scaling method, we searched for possible resonance states in the sysytem. Due to the strong attraction in the configuration, four resonance states were found in the vicinity of - GeV, predominantly featuring hidden-color structures, and their decay widths are all less than MeV. We strongly recommend experimental efforts to search for the resonance states in the system predicted by our calculations.
Keywords
Cite
@article{arxiv.2409.08933,
title = {Dynamical study of $T_{ss}$ systems at a chiral quark model},
author = {Jiazheng Ji and Yuheng Xing and Xinxing Wu and Ning Xu and Yue Tan},
journal= {arXiv preprint arXiv:2409.08933},
year = {2024}
}