Experimental measurements and theoretical calculations are reported which may resolve some of the remaining difficulties associated with photoemission from anion vacancies in thermochemically reduced MgO crystals. The intensities of the 2.3- and 3.2-eV luminescence bands are found to be strongly influenced by both the concentrations of H^- ions and anion vacancies present, and also by the intensity of the {~}5.0-eV exciting light. Theoretical calculations predict that for a ¹A1g relaxation of the surrounding ions the ¹T₁ᵤ and ³T₁ᵤ electronic states of the F center are almost degenerate and {~}0.05 eV above the ³A1g state. The ¹T₁ᵤ→¹A1g and the ³T₁ᵤ→¹A1g transition energies are predicted to be 2.2 and 2.9 eV, respectively.
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Summers et al. (1983) studied this question.
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