arXiv:1004.4877·v1·Nuclear Theory
Energy dependence of barKN interactions and resonance pole of strange dibaryons
Yoichi Ikeda (RIKEN & Tokyo U.)🇯🇵 · Hiroyuki Kamano (Jefferson Lab)🇺🇸 · Toru Sato (Osaka U.)🇯🇵
Abstract
We study the resonance energy of the strange dibaryons using two models with the energy-independent and energy-dependent potentials for the s-wave barKN interaction, both of which are derived by certain reductions from the leading order term of the effective chiral Lagrangian. These potential models produce rather different off-shell behaviors of the two-body barKN - piSigma amplitudes in I=0 channel, i.e., the model with energy-independent (energy-dependent) potential predicts one (two) resonance pole in the Lambda(1405) region, while they describe the available data equally well. We find that the energy-independent potential model predicts one resonance pole of the strange dibaryons, whereas the energy-dependent potential model predicts two resonance poles: one is the shallow quasi-bound state of the barKNN, and another is the resonance of the piYN with large width. An investigation of the binding energy of the strange dibaryons will make a significant contribution to clarify resonance structure of s-wave barKN - piSigma around the Lambda(1405) region.
Comments: 6 pages, 6 figures.