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- W2022984776 abstract "We have carried out luminescence-excitation measurements on a ${mathrm{Nd}}^{3+}$ complex in GaP in the range 1.5--2.2 eV to determine the mechanisms by which the internal ${mathrm{Nd}}^{3+}$ luminescence is generated. At low temperatures we observe transitions into the $^{4}$${mathit{S}}_{3/2}$ and $^{4}$${mathit{F}}_{7/2}$ excited states of ${mathrm{Nd}}^{3+}$ and two broad excitation bands whose integrated intensities are orders of magnitude greater than that of the ${mathrm{Nd}}^{3+}$ excited states. These broadbands demonstrate for the first time that nonradiative energy transfer from external states is the dominant low-temperature mechanism for the excitation of ${mathrm{Nd}}^{3+}$ luminescence in GaP. Reasonable assignments have been made for the origin of the broadbands on the basis of similar work carried out on rare-earth-doped II-VI semiconductors." @default.
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- W2022984776 date "1990-05-15" @default.
- W2022984776 modified "2023-09-24" @default.
- W2022984776 title "Observation of nonradiative energy transfer in the excitation ofNd3+luminescence in GaP" @default.
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- W2022984776 doi "https://doi.org/10.1103/physrevb.41.10254" @default.
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