Semiconductor Science and Technology · 1995 · 51 citations · 11 references
Materials ScienceWide-bandgap SemiconductorElectrical EngineeringIntense Luminescence EmissionEngineeringIi-vi SemiconductorPhysicsOptical PropertiesApplied PhysicsQuantum MaterialsOptoelectronic DevicesLayer SuperlatticesMolecular Beam EpitaxyEpitaxial GrowthOptoelectronicsCompound Semiconductor4-11 Mu M
Arsenic-rich InAs/lnAs1-xSbx strained layer superlattices (SLSs) grown on GaAs substrates by molecular beam epitaxy (MBE) are studied for their potential application as infrared emitters. The long-wavelength emission (4-11 mu m) is highly sensitive to superlattice design parameters and is accounted for by a large type-II band offset, greater than in previously studied antimony-rich InSb/lnAs1-xSbx SLSs. High internal PL efficiencies (>10%) and intense luminescence emission were observed at these long wavelengths despite large dislocation densities. Initial unoptimized InAs/lnAs1-xSbx SLS light emitting diodes gave approximately=200 nW of lambda =5 mu m emission at 300 K.
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Electronic states in semiconductor heterostructures
G. Bastard, J. A. Brum · IEEE Journal of Quantum Electronics · 1986 · 447 citations
Electrical and magneto-optical of MBE InAs on GaAs
P D Wang, S. N. Holmes, Tan Le et al. · Semiconductor Science and Technology · 1992 · 81 citations
Ii-vi Semiconductor, Electrical Engineering, Optical Materials +15
Uncooled InSb/In1−<i>x</i>Al<i>x</i>Sb mid-infrared emitter
T. Ashley, C.T. Elliott, Neil T. Gordon et al. · Applied Physics Letters · 1994 · 53 citations
Semiconductors, Internal Efficiency, Electrical Engineering +15