Abstract

Core polarization charge for E6 transition in the vicinity of /sup 40/Ca is calculated by the Bohr-Mottelson particle-vibration coupling model. A negative E6 proton polarization charge deltae/sup L/ = 6/sub p/ = - 0.06 is obtained because the isovector coupling constant is strongly repulsive and the lowest isoscalar particle-hole 6/sup +/ state is not collective. Comparison between the schematic interaction and other effective forces is discussed in calculations of core polarization charges of electric transitions.

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