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- W2024862245 abstract "The time-differential perturbed angular correlation technique has been applied using $^{111}mathrm{In}$ probes, which decay through electron capture to $^{111}mathrm{Cd}$, to study the hyperfine interaction in cubic cadmium oxide, in the temperature range RT--740 ifmmode^circelsetextdegreefi{}C (RT denotes room temperature). The main fraction of probes are located in perfect-lattice sites, with null electric field gradient in agreement with crystalline-structure considerations. Around 25% of the total intensity shows an electric-field-gradient distribution around ${V}_{mathrm{zz}}$=0. This corresponds to probes located in sites perturbed by the vicinity of oxygen vacancies in the lattice. The temperature-independent behavior of the measured hyperfine parameters is discussed in terms of conductivity and band-structure properties of the semiconductor. No time-dependent interaction arising from nuclear electron-capture aftereffects are seen in this experiment. This is in agreement with a previously reported model of aftereffect processes which states that only holes trapped in impurity levels inside the band gap of the semiconductor can give rise to detectable fluctuating interactions." @default.
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- W2024862245 date "1990-01-15" @default.
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- W2024862245 title "Hyperfine interactions in the cubic semiconductor CdO" @default.
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- W2024862245 doi "https://doi.org/10.1103/physrevb.41.1443" @default.
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