A generalized DWBA model applied to the 24Mg(d, p)25Mg reaction at Ed = 13.5 MeV
1970
Abstract Angular distributions of the reaction 24 Mg(d, p) 25 Mg were calculated by the code POLLUX and compared with the experimental data covering the 5 2 + [202], 1 2 + [211], 1 2 + [200] and 1 2 − [330]rotational bands. The code considers indirect transitions arising via intermediate rotational excitations of the target and final nuclei. The optical and deformation parameters for both the entrance and exit channel were taken from the elastic and inelastic scattering data. The wave function of the transferred neutron was obtained in a deformed Saxon-Woods potential. The experimental data are sufficiently well described as is shown by the comparison between calculation and measurement. This concerns the shape as well as the absolute cross section. In particular a remarkable agreement was obtained for the stripping forbidden transition to the 7 2 5 2 + [202]state.
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