Infrared and Optical Transmitting MaterialsRobert W. Schwartz |
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Contents
LONG WAVELENGTH IR MATERIALS | 63 |
NOVEL MATERIALS AND PROCESSES | 97 |
CHARACTERIZATION | 145 |
Copyright | |
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absorption absorption coefficient addition ALON applications atomic band beam boundaries bulk caused Center Ceram chemical compared composition conductivity controlled crack crystal damage defects density dependence deposition determined diameter diamond effect electron experiments fabrication fiber Figure films fracture fracture toughness gels glasses grain grain boundaries grown growth hardness heat higher hydrogen impact improved impurities increase infrared laser lattice light material measured mechanical properties melt method microns observed obtained optical oxide parameters peak performance phase polycrystalline possible powder prepared present pressing produced properties range ratio reaction refractive region relatively reported Research resistance samples sapphire scattering shown shows silica single crystals sintered Solids solution spectra spinel strength stress structure substrate sulfide surface synthesis Table technique temperature thermal thickness transmission transmittance transparent values vapor variation wavelength window yttria