-wave fully charmed tetraquark resonant states
arXiv:2208.07292 · doi:10.1103/PhysRevD.106.096005
Abstract
We calculate the mass spectrum of the -wave fully-charmed tetraquark resonant states in the nonrelativistic quark model, which successfully describes the charmonium spectrum. The four-body system is solved with the Gaussian expansion method. The complex scaling technique is used to identify the genuine resonances. With the nonrelativistic quark model, our results show the existence of two resonances in each of the , and sectors, respectively. In the -wave sector, no resonance is found at the energy region of the and states. The lower and resonances are located around MeV higher than the state observed in experiments but have the decay widths consistent with the experiment. The higher and resonances are found at around GeV with the widths of MeV and MeV, respectively, and they may be good candidates for the state.
9 pages, 5 figures, version to be published in PRD
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