arXiv:1909.13571·v1·Nuclear Theory
Transition densities and form factors in the triangular -cluster model of C with application to C+ scattering
A. Vitturi · J. Casal · L. Fortunato · E.G. Lanza
Abstract
Densities and transition densities are computed in an equilateral triangular alpha-cluster model for C, in which each particle is taken as a gaussian density distribution. The ground-state, the symmetric vibration (Hoyle state) and the asymmetric bend vibration are analyzed in a molecular approach and dissected into their components in a series of harmonic functions, revealing their intrinsic structures. The transition densities in the laboratory frame are then used to construct form-factors and to compute DWBA inelastic cross-sections for the C reaction. The comparison with experimental data indicates that the simple geometrical model with rotations and vibrations gives a reliable description of reactions where -cluster degrees of freedom are involved.