Three- and four-body kaonic nuclear states: Binding energies and widths
arXiv:1902.00903 · doi:10.1140/epja/i2019-12717-3
Abstract
Using separable potentials for interaction, we investigated four-body kaonic nuclear systems such as and , with the Faddeev AGS method in the momentum representation. The Faddeev calculations are based on the quasi-particle method and the method of the energy dependent pole expansion was used to obtain the separable representation for the integral kernels in the three- and four-body equations. Different types of potentials based on phenomenological and chiral SU(3) approach are used and it was shown that the kaonic nuclear systems under consideration are tightly bound.
17 pages, 3 figures, Eur. Phys. J. A (2019) 55: 43
References in corpus (11)
- Effective Kbar N interaction based on chiral SU(3) dynamics
- Faddeev calculation of a quasi-bound state
- Strange dibaryon resonance in the anti-KNN--piYN system
- Variational calculation of the ppK^- system based on chiral SU(3) dynamics
- Indication of a deeply bound compact K-pp state formed in the pp -> p Lambda K+ reaction at 2.85 GeV
- quasi-bound state and the interaction: coupled-channel Faddeev calculations of the system
- system with chiral SU(3) effective interaction
- Energy dependence of barKN interactions and resonance pole of strange dibaryons
- Resonance energy of the barKNN-piYN system
- Coupled-channels Faddeev AGS calculation of and quasi-bound states
- Deeply quasi-bound state in single- and double- nuclear clusters