Optical model and distorted wave analyses of (d, d), (d, p) and (d, d') reactions on O16, Ni58, Pb207 and Pb208 at 27.5 MeV
Identifieur interne : 004999 ( Main/Exploration ); précédent : 004998; suivant : 004A00Optical model and distorted wave analyses of (d, d), (d, p) and (d, d') reactions on O16, Ni58, Pb207 and Pb208 at 27.5 MeV
Auteurs : J. Testoni [Argentine] ; S. Mayo [Argentine] ; P. E. Hodgson [Royaume-Uni]Source :
- Nuclear Physics [ 0029-5582 ] ; 1963.
Abstract
Angular distributions for the elastic scattering of 27.5 MeV deuterons by isotopically-separated Pb207 and Pb208 targets together with the distributions of the proton groups resulting from stripping reactions to the ground states of Pb208 and Pb209 were measured using simple scintillation techniques with an energy resolution of 2.5 to 3%. The elastic scattering data, together with similar data previously measured on O16 and Ni58, were analysed using the diffuse-surface nuclear optical model with a volume absorption potential. The elastic scattering data were reasonably well fitted with model parameters obtained by an automatic least-squares procedure. Using the optical model parameters obtained from the elastic scattering analyses, the inelastic scattering and (d, p) stripping angular distributions were fitted by strong coupling and distorted wave Born approximation calculations.
Url:
DOI: 10.1016/0029-5582(64)90222-6
Affiliations:
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<front><div type="abstract" xml:lang="en">Angular distributions for the elastic scattering of 27.5 MeV deuterons by isotopically-separated Pb207 and Pb208 targets together with the distributions of the proton groups resulting from stripping reactions to the ground states of Pb208 and Pb209 were measured using simple scintillation techniques with an energy resolution of 2.5 to 3%. The elastic scattering data, together with similar data previously measured on O16 and Ni58, were analysed using the diffuse-surface nuclear optical model with a volume absorption potential. The elastic scattering data were reasonably well fitted with model parameters obtained by an automatic least-squares procedure. Using the optical model parameters obtained from the elastic scattering analyses, the inelastic scattering and (d, p) stripping angular distributions were fitted by strong coupling and distorted wave Born approximation calculations.</div>
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