Journal of Applied Physics · 1996 · 68 citations · 18 references
Optical MaterialsEngineeringThermal OxidationThermal ConductivityOptical PropertiesPulsed Laser DepositionThin Film ProcessingMaterials ScienceMaterials EngineeringElectrical EngineeringOxide ElectronicsGallium OxideSemiconductor MaterialMicroelectronicsOptical Absorption DataApplied PhysicsThin FilmsThermal EngineeringOptoelectronicsIndium Thin Films
Indium oxide thin films have been prepared by thermal oxidation of vacuum-deposited indium thin films in air in an open furnace at about 600 K. These indium oxide thin films prepared by thermal oxidation have been examined for optical transparency by measuring their optical absorbance as a function of wavelength. From the optical absorption data, optical band gap and the nature of the forbidden energy gap in the indium oxide thin films have been determined. Electrical conductivity measurements have also been carried out on the above oxide films as a function of temperature during heating and cooling cycles in vacuum. It is found that after the first heating, electrical conductivity increases to a significant extent due to removal of point defect clusters due to annealing which contribute to both carrier generation and scattering. From the thermoelectric power measurements carried out, it has been concluded that electrons are the majority carriers in these indium oxide thin films.
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Optical Properties of Indium Oxide
R. L. Weiher, R. Ley · Journal of Applied Physics · 1966 · 461 citations
Kinetics of Processes Distributed in Activation Energy
William Primak · Physical Review · 1955 · 369 citations
Absorption Edge of Impure Gallium Arsenide
J. I. Pánkové · Physical Review · 1965 · 313 citations
Semiconductors, Categoryquantum Electronics, Engineering +12