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Energy dependence of the optical model parameters for 3He ions scattered from 40Ca and 58Ni
Authors:H.H. Chang  B.W. Ridley  T.H. Braid  T.W. Conlon  E.F. Gibson  N.S.P. King
Affiliation:Nuclear Physics Laboratory, Department of Physics and Astrophysics, University of Colorado, Boulder, Colorado 80309, USA;Argonne National Laboratory, Lemont, Illinois 60439, USA;Nuclear Physics Division, AERE, Harwell, England;California State University, Sacramento, California 95819, USA;Cracker Nuclear Laboratory, University of California, Davis, California 95616, USA
Abstract:The differential cross sections for the elastic scattering of 3He ions on targets of 40Ca and 58Ni have been measured at incident energies of 27.7, 51.4, 73.2 and 83.5 MeV. The results of optical model analyses showed that only one unique potential (JR ≈ 330 MeV · fm3) with a surface absorptive term can provide acceptable fits to the large angle elastic scattering cross sections at 83.5 MeV. The particular geometrical set found at 83.5 MeV could not, however, give an adequate fit to the data with energy less than 40 MeV. Subsequent analyses indicated that a break in the energy dependence of the real potential is observed for the low energy data. Explicit energy dependent terms were obtained by fitting all the data simultaneously. These phenomenological potentials were also compared with the folded nucleon-nucleus potential. The influence of the α-particle channels on the elastic scattering of 3He ions at 83.5 MeV was also examined.
Keywords:Nuclear reactions
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