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- W2030982023 abstract "The dynamical coupling of the individual crystal-field transitions and the conduction electrons is investigated for non$S$-state ions in an arbitrary crystal field. The equations given are the result of a microscopic quantum-statistical treatment. All relevant terms of the transition matrix have been calculated in the lowest nonvanishing order of perturbation theory. The results allow a quantitative description of the experimental ESR spectra. A particular physically realistic example is discussed in detail. A large temperature-dependent $g$ shift and a decrease of the width with increasing concentration is found for the local-moment resonance. At high temperatures the coupling to the excited states plays an important role and in particular affects the conduction-electron resonance shift. The relevance of these effects for actual physical situations is discussed in some detail." @default.
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- W2030982023 date "1978-12-01" @default.
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- W2030982023 title "Coupled electron spin resonance of non-S-state impurities in metals" @default.
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- W2030982023 doi "https://doi.org/10.1103/physrevb.18.5977" @default.
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