Recently, the BES\uppercase\expandafter{\romannumeral3} Collaboration updated the data for the exotic state, Ds0∗(2317), with a mass of 2318.3±1.2±1.2 MeV from the positronium annihilation process. Inspired by the experiment, we systematically investigated the cqˉ meson family spectrum from the perspectives of two-quark, four-quark, and mixed two-four-quark structures, including Ds, Ds∗, Ds0∗(2317), and Ds1(2460), with the help of the Gaussian expansion method, which is a very accurate calculation method for few-body systems. We found that with appropriate spin-orbit coupling parameter as, the chiral quark model can effectively describe both Ds0∗(2317) and Ds1(2460). The four-quark calculation shows that the DK state does not form a bound state, but the effective potential calculation shows an attractive interaction between them. Finally, we performed mixed two-four-quark calculations, and the results, with the help of the unquenched effect, show that the energies of Ds0∗(2317) and Ds1(2460) are in better agreement with experimental values. Therefore, we conclude that these two particles are good candidates for mixed two-four-quark states.
@article{arxiv.2111.04677,
title = {Systematic study of $D_{s0}^{*}$(2317) in quark models},
author = {Yue Tan and Yuheng Wu and Youchang Yang and Jialun Ping},
journal= {arXiv preprint arXiv:2111.04677},
year = {2025}
}