Observing the effects of numbers of valence nucleons on 0gs+ → 21+ transitions in deformed nuclei by comparing proton and neutron transition matrix elements
P. D. Cottle, L. A. Riley, A. Gade, K. W. Kemper, M. Spieker
Abstract
We examined the ratios of neutron and proton transition matrix elements, Mn/Mp, for the 0gs+ → 21+ transitions in 48 even-even stable nuclei with N>20 for which electromagnetic matrix elements were compiled by Pritychenko et al. and for which high-quality inelastic proton scattering data were available. Several deformed rare earth nuclei have (Mn/Mp)/(N/Z) values significantly below 1.0, which is not consistent with a simple liquid drop picture. However, this phenomenon can be explained using a schematic picture in which Mp reaches a maximum at proton mid-shell (Z=66) and Mn reaches its maximum at neutron mid-shell (N=104). Several mid-mass vibrational nuclei have Mn/Mp values significantly below N/Z, which is not consistent with the expectation that Mn/Mp = N/Z in such nuclei. A shell model investigation of these observations might yield insights about this behavior.
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