Journal of Applied Physics · 1992 · 67 citations · 25 references
SemiconductorsSemiconductor TechnologyElectrical EngineeringElectronic DevicesEngineeringWide-bandgap SemiconductorPhysicsCrystalline DefectsPhotoluminescenceOptoelectronic MaterialsApplied PhysicsSemiconductor MaterialsPhotoluminescence DecayOptoelectronic DevicesHigher Electron DensitiesOptoelectronicsCompound SemiconductorElectron Densities
Time-resolved photoluminescence decay measurements are used to explore minority carrier recombination in n-type GaAs grown by metalorganic chemical vapor deposition, and doped with selenium to produce electron concentrations from 1.3×1017 cm−3 to 3.8×1018 cm−3. For electron densities n0<1018 cm−3, the lifetime is found to be controlled by radiative recombination and photon recycling with no evidence of Shockley–Read–Hall recombination. For higher electron densities, samples show evidence of Shockley–Read–Hall recombination as reflected in the intensity dependence of the photoluminescence decay. Still, we find that radiative recombination and photon recycling are important for all electron concentrations studied, and no evidence for Auger recombination was observed.
25
Optical properties of Al<i>x</i>Ga1−<i>x</i> As
D. E. Aspnes, S. M. Kelso, R. A. Logan et al. · Journal of Applied Physics · 1986 · 869 citations
Extreme selectivity in the lift-off of epitaxial GaAs films
Eli Yablonovitch, T.J. Gmitter, J. P. Harbison et al. · Applied Physics Letters · 1987 · 801 citations · Full text
Materials Science, Wide-bandgap Semiconductor, Engineering +10
Gallium Arsenide and Related Compounds
Bob Wilson · Physics Bulletin · 1973 · 694 citations