Spectrum of the strange hidden charm molecular pentaquarks in chiral effective field theory
arXiv:1912.12592 · doi:10.1103/PhysRevD.101.034018
Abstract
We calculate the effective potentials of the , and systems with the chiral effective field theory up to the next-to-leading order. We simultaneously consider the short-, intermediate- and long-range interactions. With the newly observed spectra as inputs, we construct the quark-level contact Lagrangians to relate the low energy constants to those of with the help of quark model. Our calculation indicates there are seven bound states in the strange hidden charm and systems. Our analyses also disfavor the bound states. However, we obtain three new hadronic molecules in the isoscalar systems. The masses of , and are predicted to be MeV, MeV and MeV, respectively. We also notice the one-eta-exchange influence is rather feeble. Binding solutions in the channels are nonexistent. We hope the future analyses at LHCb can seek for these new s in the final states, especially near the thresholds of .
9 pages, 2 figures, and 4 tables
References in corpus (15)
- Chiral effective field theory and nuclear forces
- Multiquark Resonances
- Pentaquark and Tetraquark states
- Observation of a narrow pentaquark state, , and of two-peak structure of the
- Improved chiral nucleon-nucleon potential up to next-to-next-to-next-to-leading order
- Emergence of a complete heavy-quark spin symmetry multiplet: seven molecular pentaquarks in light of the latest LHCb analysis
- Strong LHCb evidence supporting the existence of the hidden-charm molecular pentaquarks
- Study of , , and in a quasipotential Bethe-Salpeter equation approach
- Heavy quark spin symmetric molecular states from and other coupled channels in the light of the recent LHCb pentaquarks
- Anatomy of the newly observed hidden-charm pentaquark states: , and
- Isospin breaking decays as a diagnosis of the hadronic molecular structure of the
- Hidden-charm and hidden-bottom molecular pentaquarks in chiral perturbation theory
- Hadronic Molecular States Composed of Heavy Flavor Baryons
- A possible global group structure for exotic states
- interactions in chiral effective field theory