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AbstractAbstract
[en] The 52Cr(p,α)49V reaction has been studied at a bombarding energy of 35 MeV. The qualitative features of the spectra are discussed. These include the population of proton hole states, analog states, and high spin states. The spectra are compared with other pick-up reaction data and the comparison is shown to be a useful tool for identifying positive parity states in this region. Some states which are observed in 51V(p,t)49V data are not observed in the (p,α) spectra. Distorted-wave calculations using mass three cluster form factors are described and shown to reproduce the experimental angular distributiions of the previously known levels. Similar calculations using microscopic form factors also reproduce the shapes of the angular distributions reasonalby well. Relative spectroscopic factors for the proton hole states deduced from the microscopic calculations are shown to be in good agreement with zero order shell model predictions. The general trends of the experimental cross sections for the negative parity microscoic states are shown to be reproduced by microscopic calculations assuming 0f/sub 7/2/3 pickup
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Record Type
Journal Article
Journal
Phys. Rev., C; v. 18(5); p. 2065-2078
Country of publication
ANGULAR MOMENTUM, BARYON REACTIONS, BETA DECAY RADIOISOTOPES, BORN APPROXIMATION, DAYS LIVING RADIOISOTOPES, DIRECT REACTIONS, DISTRIBUTION, ELECTRON CAPTURE RADIOISOTOPES, ENERGY RANGE, HADRON REACTIONS, INTERMEDIATE MASS NUCLEI, ISOTOPES, MEV RANGE, NUCLEAR REACTIONS, NUCLEI, NUCLEON REACTIONS, ODD-EVEN NUCLEI, PARTICLE PROPERTIES, RADIOISOTOPES, SPECTRA, TARGETS, TRANSFER REACTIONS, VANADIUM ISOTOPES
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