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Investigation of the $X(4020)$ peak in the $D^*\bar D^*$ and $πh_c$ channels

In this paper, the nature of $X(4020)$ observed in the vicinity of the $D^*\bar D^*$ threshold of the $πh_c$ and $D^*\bar D^*$ distributions is studied. Using a model containing one bare-particle state with the $πh_c$ and $D^*\bar D^*$ one-loop self energies, we make a fit to the $πh_c$ and $D^*\bar D^*$ distributions of the $e^+e^-\toπ^+π^-h_c$ and $e^+e^-\toπ^- D^{*+}\bar D^{*0}$ reactions reported by the BESIII Collaboration. It is found that both structures seen in the $πh_c$ and $D^*\bar D^*$ channels are described well with one resonant state which can be associated with $X(4020)$ while the obtained $X(4020)$ mass and width are found to be larger than those in the latest PDG. We evaluate the scattering length and effective range of the $S$-wave $D^*\bar D^*$ pair with spin $J=1$ related to the $X(4020)$ properties which can be tested with model calculations or future lattice QCD study. Our analysis suggests that a large part of $X(4020)$ may come from a bare-particle state originating from some short-range dynamics other than the $D^*\bar D^*$ channel.

preprint2022arXivOpen access

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