Effective Mass of -Cluster in C Nucleus
arXiv:2205.02155 · doi:10.1142/S0218301322500987
Abstract
Based on the effective-mass concept, we perform the Faddeev calculations for a low-lying spectrum of 3 states in C nucleus. A three-body potential is used to describe the known breaking of the 3-cluster structure in the nucleus. We show that the contribution of the three-body potential to the Hamiltonian can be compensated by increasing/decreasing the -particle free mass. The effective-mass values are adjusted so that to reproduce the experimental data for the C nucleus. The energy dependence of the effective mass and the correlation to a three-body potential are discussed. We show that the coupling between the () levels forms a specific picture of anti-crossing on the energy/effective-mass plane.
13 pages, 6 figures