Philosophical magazine · 1966 · 86 citations · 9 references
EngineeringNuclear PhysicsFast NeutronsRadiation Materials ScienceRadiation EffectRadiation ExposureMagnetic ResonanceIrradiation-induced DiffusionOscillator StrengthMagnesium OxideMagnetismRadiation ChemistryDose DependenceMaterials SciencePhysicsNeutron SourceNuclear EngineeringNatural SciencesApplied PhysicsNeutron ScatteringOptical Absorption Studies
Abstract Parallel electron spin resonance and optical absorption studies of magnesium oxide irradiated to six different doses in the range 1017 to1019 nvt> 1 mev have made possible a detailed correlation of the F-centre with the optical band centred at 2500 Å. Thermal bleaching experiments at 320°c for periods between 5 min and two days confirm this correlation in addition to the less detailed experiments of Wertz et al. (1964). The results are consistent with an oscillator strength of 0.8 for the F-band in magnesium oxide. In samples irradiated to high dose a maximum F-centre concentration of 6 × 1018 F/cm3 is observed at 5×1019nvt. This effect may be associated with the clustering of defects caused by irradiation-induced diffusion at the ambient pile temperature of 150°c.
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The Displacement of Atoms in Solids by Radiation
G.H. Kinchin, R. S. Pease · Reports on Progress in Physics · 1955 · 1.6K citations
John E. Wertz, Peteris Auzins, R. A. Weeks et al. · Physical Review · 1957 · 159 citations