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Charmoniumlike resonant explanation on the newly observed $X(3960)$

Published 12 Sep 2022 in hep-ph | (2209.05180v2)

Abstract: Stimulated by the observation of the newly $X(3960)$ observed by the LHCb collaboration, we adopt the one-boson-exchange model and consider the $S-D$ wave mixing effects to study the $D_s\bar{D}_s/D\bar{D}^/D_s\bar{D}_s^$ interactions with $I(J{PC})=0(0{++})$. After producing the phase shifts of this coupled channel systems, our results show that there can exist a charmoniumlike resonance, whose obtained mass and width can both well match with the experimental data of the newly observed $X(3960)$. We also find that the $D\bar{D}^$ system plays an important role in the formation of the newly observed $X(3960)$ as a charmoniumlike resonance, and the $D_s\bar{D}_s^$ system makes a significant contribution to the resonant width. As a byproduct, we perform a coupled channel analysis on the $D\bar{D}^/D_s\bar{D}_s/D_s^\bar{D}_s*$ interactions with $I(J{PC})=0(1{+-})$, our results can predict the existence of the $D_s\bar{D}_s*$ molecule with $1{+-}$ and the $D_s\bar{D}_s^$ molecule with $1{+-}$. Their widths are around several and several to several tens MeV, respectively. Experimental searches for these two possible charmoniumlike molecular candidates can be helpful to verify our proposal.

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