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AbstractAbstract
[en] Interference effects in 28Si(p,p') inelastic scattering are studied in the Coulomb barrier region. The interference occurs between compound contributions and direct inelastic transitions. The asymmetric resonance shape is analysed to extract the intrinisic shape of the excited target nucleus. (Auth.)
Primary Subject
Record Type
Journal Article
Journal
Nuclear Physics. A; v. 276(2); p. 229-236
Country of publication
ANGULAR DISTRIBUTION, COULOMB FIELD, COUPLED CHANNEL THEORY, DEFORMED NUCLEI, DIFFERENTIAL CROSS SECTIONS, DWBA, EXCITATION, EXCITATION FUNCTIONS, FORM FACTORS, INELASTIC SCATTERING, INTERFERENCE, MATRIX ELEMENTS, PROTON REACTIONS, ROTATIONAL STATES, SCATTERING AMPLITUDES, SILICON 28, SILICON 28 TARGET, SPIN, WEAK-COUPLING MODEL
AMPLITUDES, ANGULAR MOMENTUM, BARYON REACTIONS, BORN APPROXIMATION, CROSS SECTIONS, DISTRIBUTION, ELECTRIC FIELDS, ENERGY LEVELS, ENERGY-LEVEL TRANSITIONS, EVEN-EVEN NUCLEI, EXCITED STATES, HADRON REACTIONS, ISOTOPES, LIGHT NUCLEI, MATHEMATICAL MODELS, NUCLEAR MODELS, NUCLEAR REACTIONS, NUCLEI, NUCLEON REACTIONS, PARTICLE PROPERTIES, SCATTERING, SILICON ISOTOPES, STABLE ISOTOPES, TARGETS
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