arXiv:2001.09662·v1·Nuclear Experiment
Nuclear structure studies performed using the (18O,16O) twoneutron transfer reactions
D. Carbone · C. Agodi · F. Cappuzzello · M. Cavallaro · J. L. Ferreira · A. Foti · A. Gargano · S.M. Lenzi · R. Linares · J. Lubian · G. Santagati
Abstract
Excitation energy spectra and absolute cross section angular distributions were measured for the 13C(18O,16O)15C two-neutron transfer reaction at 84 MeV incident energy. This reaction selectively populates two-neutron configurations in the states of the residual nucleus. Exact finite-range coupled reaction channel calculations are used to analyse the data. Two approaches are discussed: the extreme cluster and the newly introduced microscopic cluster. The latter makes use of spectroscopic amplitudes in the centre of mass reference frame, derived from shell-model calculations using the Moshinsky transformation brackets. The results describe well the experimental cross section and highlight cluster configurations in the involved wave functions.