It was shown previously that significant nonlinear shielding of the rare-earth electrostatic crystalline-field interactions may occur, and hence that the standard parametrization scheme used to determine the crystalfield parameters, VLM=ALM〈rL〉, was questionable. These nonlinear effects arise from the same distortions of the closed shells in rare-earth ions which produce the (larger) linear shielding of the crystal field Vc. In this paper, both nonlinear and linear shielding effects have been investigated for the rare-earth ions Ce³⁺, and Tb³⁺ through Yb³⁺ inclusive. The method of single substituted configurations is employed and is shown to avoid the difficulties associated with the traditional single-determinant perturbation-theory approach previously used exclusively by various authors. Results based on both methods are given and compared; significant differences in linear-shielding predictions are found to be introduced by the inexact traditional approach. Calculations for the nonlinear 5p→4f effects have been done, and results displayed, as a function of the strength of Vc (based on the point-charge model). The relevance of these effects to experiment is examined qualitatively.
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Freeman et al. (1965) studied this question.
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