Discovery of the doubly charmed state implies a triply charmed hexaquark state
arXiv:2108.00923
Abstract
The doubly charmed exotic state recently discovered by the LHCb Collaboration could well be a molecular state long predicted in various theoretical models, in particular, the isoscalar axial vector molecular state predicted in the one-boson-exchange model. In this work, we study the system in the Gaussian Expansion Method with the interaction derived from the one-boson-exchange model and constrained by the precise binding energy of keV of with respect to the threshold. We show the existence of a state with a binding energy of a few hundred keV and spin-parity . Its main decay modes are and . The existence of such a state could in principle be confirmed with the upcoming LHC data and will unambiguously determine the nature of the state and of the many exotic state of similar kind, thus deepening our understanding of the non-perturbative strong interaction.
4 pages, 3 figures
Cited by in corpus (7)
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- and its partners
- decays: Differential spectra and two-body final states
- Subleading contributions to the decay width of the tetraquark
- Prediction of new states of and molecular nature
- Production of the state in the reaction
- Mixing angles between the tetraquark states with two heavy quarks within QCD sum rules