Conduction in non-crystalline systems V. Conductivity, optical absorption and photoconductivity in amorphous semiconductors
Philosophical magazine · 1970 · 4.2K citations · 35 references
SemiconductorsIi-vi SemiconductorOptical MaterialsOptical Absorption CoefficientEngineeringPhysicsOptical PropertiesApplied PhysicsCondensed Matter PhysicsOptical AbsorptionSemiconductor MaterialAmorphous SemiconductorsDrift MobilityAmorphous SolidCharge Carrier TransportOptoelectronicsCompound Semiconductor
Abstract The experimental evidence concerning the density of states in amorphous semiconductors and the ranges of energy in which states are localized is reviewed; this includes d.c. and a.c. conductivity, drift mobility and optical absorption. There is evidence that for some chalcogenide semiconductors the model proposed by Cohen, Fritzsche and Ovshinsky (1969) should be modified by introducing a band of localized states, near the centre of the gap. The values of C, when the d.c. conductivity is expressed as C exp (- E/kT), are considered. The behaviour of the optical absorption coefficient near the absorption edge and its relation to exciton formation are discussed. Finally, an interpretation of some results on photoconductivity is offered.
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Conduction in non-crystalline materials
N. F. Mott · Philosophical magazine · 1969
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Polarons in crystalline and non-crystalline materials
I. G. Austin, N. F. Mott · Advances In Physics · 1969
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Electrons in disordered structures
N. F. Mott · Advances In Physics · 1967
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Simple Band Model for Amorphous Semiconducting Alloys
Morrel H. Cohen, H. Fritzsche, Stanford R. Ovshinsky · Physical Review Letters · 1969
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