Strange Skyrmions: status and observable predictions
arXiv:hep-ph/9712453 · doi:10.1016/S0375-9474(98)00253-X
Abstract
The chiral soliton approach (CSA) provides predictions of the rich spectrum of baryonic states with different values of strangeness for any baryon number B. In the sector with B=1 the well known octet and decuplet of baryons are described within CSA, and some exotic states are predicted. In the B=2 sector there are many predictions, but only few of them - e.g. the existence of the virtual N-state - have been confirmed till now. Possible reasons for this are discussed. In particular, the B=2 SO(3) hedgehog interpreted usually as H-particle within CSA has dimensions considerably smaller than dimensions of the deuteron. Therefore, the estimates of its production cross section made previously in the assumption that H-particle and deuteron are approximately of the same size, may be too optimistic. Other branches of the CSA predictions corresponding to other local minima of the B=2 configurations of the SU(3) chiral fields: SU(2) torus and skyrmion molecule with strangeness content close to 0.5 are also considered.
7 pages, no figures. Talk presented at the 6th International Conference on Hypernuclear and Strange Particles Physics (HYP97), BNL, Upton, N.Y., 13-18 October 1997 Submitted to Nucl. Phys. A
References in corpus (1)
Cited by in corpus (15)
- Dynamical calculation of the dibaryon candidates
- High strangeness dibaryons in the extended quark delocalization, color screening model
- Quantum chromodynamics quark benzene
- Dibaryons with two heavy quarks
- Flavoured multiskyrmions
- The di-Omega in the extended quark delocalization, color screening model
- Hexaquarks in the coupled-channel formalism
- Reanalysis of the most strange dibaryon within constituent quark models
- Low-lying S-wave and P-wave Dibaryons in a Nodal Structure Analysis
- Heavy dibaryons
- Diquarks, Pentaquarks and Dibaryons
- Heavy Hexaquarks in the Flux Tube Model
- Twelve-quark hypernuclei with A=4 in relativistic quark-gluon model
- Skyrmions from SU(3) harmonic maps and their quantization
- Molecular state in the coupled-channel formalism