Abstract
Elastic scattering data for proton scattering from C12 are analyzed phenomenologically by use of local, complex, one-channel optical-model potentials and in an extended coupled-reaction-channel environment. Although the back-coupling amplitudes in the elastic channel from pickup-stripping paths through C11 intermediate states are found to be quite sizable, the optical-model potential is able to simulate most of the effects quite well for both scattering and reaction processes at energies greater than about 60 MeV. The parameters of the optical-model potential and the residual optical-model potential of the coupled-reaction-channel environment are found to vary smoothly with energy. Below 60 MeV, these parameters have quite different trends and the ability of the one-channel optical-model potential to simulate the singular effects of strong couplings is much reduced. NUCLEAR REACTIONS C12+p system, energies up to 185 MeV; optical-model phenomenological analysis; coupled-reaction-channel analysis; comparison with DWBA calculations.
Original language | English (US) |
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Pages (from-to) | 2162-2176 |
Number of pages | 15 |
Journal | Physical Review C |
Volume | 21 |
Issue number | 6 |
DOIs | |
State | Published - 1980 |
ASJC Scopus subject areas
- Nuclear and High Energy Physics