Publication | Closed Access
On the theory of absorption and luminescence spectra in amorphous semiconductors
15
Citations
14
References
1979
Year
Optical MaterialsEngineeringLocalized Excited StateAmorphous SemiconductorsOptical CharacterizationElectronic Excited StateLuminescence PropertySemiconductorsLuminescence SpectraLuminescence IntensityOptical PropertiesAbsorption CoefficientMaterials ScienceQuantum SciencePhotoluminescencePhysicsSemiconductor MaterialExcited State PropertyLocalized Electron StatesNatural SciencesSpectroscopyApplied PhysicsPhononLight AbsorptionAmorphous SolidOptoelectronics
Abstract Optical transitions in a system of randomly distributed localized electron states coupled to the phonon system are considered. A general expression for the spectral dependence of the absorption coefficient and the luminescence intensity is derived. This expression is applied to the uncorrelated case where the spectral dependences are determined by a density‐of‐states model. Various types of optical transitions within a density‐of‐states model are considered and the corresponding spectral dependences discussed. The derived spectral representation allows the direct calculation of the temperature dependent moments for the various bands.
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