AbstractAbstract
[en] Form factors for inelastic electron scattering for the excitation of the 3/2-, 5/2-, 9/2-, 11/2- and 15/2- members of the (fsub(7/2))3 configuration in 51V are studied by considering the effect of configuration mixing in the shell model. The inclusion of the highly excited configurations which does not contribute to the γ-transitions is shown to give rise to significant modifications of the form factors in large momentum transfer regions. Under the assumption of the static central potential as the residual interactions between protons, good agreement with the experimental data on form factors is obtained by the ordinary force as well as smaller effective charges than the bare charge for higher multipole transitions. (Auth.)
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Journal Article
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Nuclear Physics. A; v. 277(2); p. 270-284
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Descriptors (DEI)
BESSEL FUNCTIONS, BORN APPROXIMATION, CONFIGURATION MIXING, DE-EXCITATION, EFFECTIVE CHARGE, ELECTRON REACTIONS, EXCITATION, EXCITED STATES, FORM FACTORS, GAMMA RADIATION, GROUND STATES, HARMONIC OSCILLATORS, INELASTIC SCATTERING, MATRIX ELEMENTS, NUCLEAR STRUCTURE, PERTURBATION THEORY, RACAH COEFFICIENTS, SHELL MODELS, VANADIUM 51 TARGET
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