Abstract
Cross section angular distributions of60Ni(16O,12C)64Zn reactions leading to three strongly excited states at 60 MeV incident energy and the16O+60Ni and12C+64Zn elastic scattering at 60 MeV respectively 45 MeV and 54 MeV have been measured using aQ3D magnetic spectrograph. EFR-DWBA calculations assuming the transfer of anα-cluster in its 0s ground state are able to describe the general features of the strongly oscillating experimental angular distributions using a surface transparent optical model potential. The optical model parameters used in the DWBA calculations are obtained from fits of the elastic scattering data of incident and exit channels. The importance of “correct” optical model parameters in the exit channels for relative spectroscopic factors will be discussed and the extracted relative spectroscopic factors will be compared to previous (6Li,d) results.
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The authors would like to thank Mr. Jean-Paul Le Fèvre for his assistance during the experiment. One of the authors (G.B.) would like to thank Drs. E. Cotton, J. Gastebois and S. Harrar for support and kind reception during his stay in Saclay.
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Berg, G.P.A., Berthier, B. Exact finite-range DWBA description of the60Ni(160,12C)64Zn reaction at 60 MeV incident energy. Z Physik A 305, 235–239 (1982). https://doi.org/10.1007/BF01417440
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DOI: https://doi.org/10.1007/BF01417440