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- W2049187778 abstract "Optically detected electron-nuclear double resonance (ODENDOR) has been observed via photoluminescence from the first-neighbor $^{31}mathrm{P}$ shell of the phosphorus antisite in zinc-doped InP. Analysis of the ENDOR data confirms a tetrahedral arrangement of $^{31}mathrm{P}$ nuclei. The hyperfine interaction for each of these nuclei is axial with ensuremath{Vert}${mathit{A}}_{mathrm{ensuremath{parallel}}}$ensuremath{Vert}/h=368.0ifmmodepmelsetextpmfi{}0.5 MHz and ensuremath{Vert}${mathit{A}}_{mathrm{ensuremath{perp}}}$ensuremath{Vert}/h=247.8ifmmodepmelsetextpmfi{}0.5 MHz. These parameters are slightly different from those reported by Jeon et al. [Phys. Rev. B 36, 1324 (1987)]. A shift of the ENDOR frequencies correlated with a change in the central nuclear-spin state has also been observed. We have been able to account for this shift with a perturbation treatment in which the electronic spin and central nuclear spin are treated exactly and a neighboring nuclear spin provides the perturbation. The best ENDOR signals are obtained with low optical-excitation-power density (ensuremath{sim}0.1 W/${mathrm{cm}}^{2}$) and low microwave modulation frequency (17 Hz). These conditions emphasize the contributions to the optically detected magnetic-resonance signal from distant donor-acceptor pairs." @default.
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- W2049187778 date "1992-07-15" @default.
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- W2049187778 title "P31electron-nuclear double resonance of thePInantisite in InP:Zn detected via luminescence" @default.
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- W2049187778 doi "https://doi.org/10.1103/physrevb.46.1377" @default.
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