Applied Physics Letters · 2006 · 37 citations · 19 references
Materials ScienceMagnetismX-ray CrystallographyAluminum NitrideElectron-nuclear Double ResonanceEngineeringPhysicsAluminium NitrideNatural SciencesCubic Boron NitrideElectron Paramagnetic ResonanceCondensed Matter PhysicsMagnetic ResonanceApplied PhysicsElectron SpectroscopyChemistryCrystallography
Electron paramagnetic resonance (EPR) and electron-nuclear double resonance (ENDOR) spectra are obtained from a donor in aluminum nitride (AlN) crystals. Although observed in as-grown crystals, exposure to x rays significantly increases the concentration of this center. ENDOR identifies a strong hyperfine interaction with one aluminum neighbor along the c axis and weaker equivalent hyperfine interactions with three additional aluminum neighbors in the basal plane. These aluminum interactions indicate that the responsible center is a deep donor at a nitrogen site. The observed paramagnetic defect is either a neutral oxygen substituting for nitrogen (ON0) or a neutral nitrogen vacancy (VN0).
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Growth of high purity AlN crystals
Glen A. Slack, T. McNelly · Journal of Crystal Growth · 1976 · 449 citations
Materials Engineering, Materials Science, Aluminium Nitride +6
M. Asif Khan, M. Shatalov, H. P. Maruska et al. · Japanese Journal of Applied Physics · 2005 · 419 citations · Full text
Some effects of oxygen impurities on AlN and GaN
Glen A. Slack, L. J. Schowalter, Donald T. Morelli et al. · Journal of Crystal Growth · 2002 · 405 citations