Abstract

The photosensitive iron transition group impurities Fe, Ni, and V in cubic ZnS and Ni in ZnO have been studied by electron paramagnetic resonance. The charge states ${\mathrm{Fe}}^{3+}$, ${\mathrm{Fe}}^{+}$, ${\mathrm{Ni}}^{3+}$, and ${\mathrm{V}}^{3+}$ were observed after excitation with ultraviolet light, and, in the case of ${\mathrm{Ni}}^{3+}$, after excitation with blue light. The magnetic properties are those to be expected for a $3{d}^{7} ({\mathrm{Fe}}^{+} \mathrm{and} {\mathrm{Ni}}^{3+})$ and a $3{d}^{2} ({\mathrm{V}}^{3+})$ configuration in tetrahedral coordination. The quantitative features of the spectra reflect the systematic variations produced by covalency.

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