On the binding of the and systems
arXiv:1709.01372 · doi:10.1103/PhysRevD.96.094007
Abstract
We study theoretically the and systems to see if they allow for possible bound or resonant states. The three-body interaction is evaluated implementing the Fixed Center Approximation to the Faddeev equations which considers the interaction of a or particle with the components of a cluster, previously proved to form a bound state. We find an bound state for the system at an energy around MeV within uncertainties, which would correspond to a bottom--hidden-charm meson. In contrast, the system, which would be bottom--double-charm and hence manifestly exotic, we have found hints of a bound state in the energy region MeV, but the results are not stable under the uncertainties of the model, and we cannot assure, neither rule out, the possibility of a three-body state.
6 pages, 4 figures
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- mesons with hidden charm arising from and dynamics
- Few-body systems consisting of mesons
- Bound state formation in the system
- Double heavy tri-hadron bound state via delocalized bond
- Three-body model for resonance
- Faddeev fixed-center approximation to the system and the hidden charm state
- Prediction of possible exotic states in the system
- Possible bound states with hidden bottom from systems
- Tri-meson bound state via delocalized ~Bond
- Prediction of new states from three-body interactions
- The charge and mass symmetry breaking in the system
- Analysis of the tetraquark and hexaquark molecular states with the QCD sum rules
- Faddeev fixed-center approximation to the , and systems
- The Three-Body System
- Dynamically generated states from the , , and systems within the fixed-center approximation
- Tri-meson state