IEEE Journal of Quantum Electronics · 1998 · 64 citations · 40 references
Wide-bandgap SemiconductorPhotonicsElectrical EngineeringOptical MaterialsAll-optical SwitchingEngineeringPhysicsOptical PropertiesApplied PhysicsTwo-photon Absorption CoefficientSemiconductor MaterialOptical SwitchingUltrafast OpticsLow-temperature-grown GaasOptical CharacterizationMicroelectronicsOptoelectronicsCompound Semiconductor
Low-temperature-grown GaAs (LT-GaAs) is a promising material for all-optical switching devices due to its outstanding optical characteristics. In this paper, we outline a simplified model we have developed to describe the dynamics of the carriers in this material. We also report the results of a series of measurements that we have performed to characterize the optical properties of the material. Specifically, we present the first measurements of the two-photon absorption coefficient and the refractive index changes as a function of the growth and annealing temperatures in LT-GaAs. Finally, we show how our model can be used to optimize the material for applications in all-optical switching.
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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
New MBE buffer used to eliminate backgating in GaAs MESFETs
F. W. Smith, A. R. Calawa, C.-L. Chen et al. · IEEE Electron Device Letters · 1988 · 622 citations
Semiconductors, Output Resistance, Electrical Engineering +11