Possible -like dibaryon states with heavy quarks
arXiv:1311.4732 · doi:10.1103/PhysRevC.89.035201
Abstract
Possible -like dibaryon states and are investigated within the framework of quark delocalization color screening model. The results show that the interaction between two 's is repulsive, so it cannot be bound state by itself. However, the strong attraction in and channels and the strong channel coupling, due to the central interaction of one-gluon-exchange and one-pion-exchange, among , and push the energy of system below the threshold of by MeV. The corresponding system has the similar properties as that of system, and a bound state is also possible in system.
6 pages, 4 figures, 3 tables
References in corpus (5)
Cited by in corpus (24)
- Chiral perturbation theory for heavy hadrons and chiral effective field theory for heavy hadronic molecules
- A survey of heavy-heavy hadronic molecules
- Exotic hadrons: review and perspectives
- Possible pentaquarks with heavy quarks
- Systematics of the heavy flavor hadronic molecules
- Interpreting and as charged tetraquark states
- Deuteron-like states composed of two doubly charmed baryons
- Search for doubly-heavy dibaryons in a quark model
- Heavy flavor dibaryons
- Search for doubly-heavy dibaryons in the quark-delocalization color-screening model
- Possible hadronic molecules composed of the doubly charmed baryon and nucleon
- Triply-charmed dibaryon states or two-baryon scattering states from the QCD sum rules?
- -like pentaquarks in hidden strange sector
- Dibaryons with two strange quarks and one heavy flavor in a constituent quark model
- Doubly charmed multibaryon systems
- Prediction of -like dibaryons with heavy quarks
- Spectrum of the molecular hexaquarks
- Photo-absorption on deuteron contributed by d^*(2380) resonance
- Charmed baryons in nuclear matter
- Double-charm and hidden-charm hexaquark states under the complex scaling method
- Doubly charmed dibaryon states
- Lattice QCD study of scattering
- Production of dibaryon in kaon induced reactions
- Prospects for compact hexaquarks under the limitation imposed by quark confinement