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AbstractAbstract
[en] Experiments were performed at the Indiana University Cyclotron Facility (IUCF) to measure the energy and angular distributions of neutrons produced in the (p,n) reaction on 40Ca and 48Ca targets at the Indiana University Cyclotron Facility (IUCF) at a beam energy of about 134 MeV. Neutron energies were determined by the time-of-flight (TOF) technique with energy resolutions from 320 to 460 keV and from 220 to 415 keV for 40Ca targets, respectively, and over the angular range from 00 to 600 spaced approximately 60 apart. Absolute neutron cross sections were obtained from the known geometry of the experiment with neutron detector efficiencies calculated with the KSU Monte-Carlo code. The experimental data were analyzed to obtain neutron energy spectra, cross section angular distributions and analyzing-powers for the observed transitions. The spins and parities of the strongest excitations for both 40Ca and 48Ca targets were identified by comparing the experimental results (such as excitation energies, angular distributions and analyzing-powers) with Distorted Wave Impulse Approximation (DWIA) calculations performed at Kent State and elsewhere
Primary Subject
Source
1985; 264 p; University Microfilms Order No. 86-04,160; Thesis (Ph. D.).
Record Type
Report
Literature Type
Thesis/Dissertation; Numerical Data
Country of publication
ACCELERATORS, ANGULAR MOMENTUM, BARYON REACTIONS, BARYONS, CYCLIC ACCELERATORS, CYCLOTRONS, DATA, DISTRIBUTION, ELEMENTARY PARTICLES, ENERGY RANGE, FERMIONS, HADRON REACTIONS, HADRONS, INFORMATION, ISOCHRONOUS CYCLOTRONS, MEV RANGE, NUCLEAR REACTIONS, NUCLEON REACTIONS, NUCLEONS, NUMERICAL DATA, PARTICLE PROPERTIES, SPECTRA, TARGETS
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