Applied Physics Letters · 2004 · 119 citations · 12 references
Wide-bandgap SemiconductorGan-based Schottky DetectorsEngineeringOptical PropertiesNanoelectronicsPhotonicsElectrical EngineeringPhotoluminescencePhysicsAluminum Gallium NitrideTrap DensitySurface TrappingPhotoelectric MeasurementMicroelectronicsCategoryiii-v SemiconductorApplied PhysicsGan Power DeviceGain MechanismOptoelectronics
GaN-based Schottky detectors were implemented and their photoresponse as a function of the incident power and time was measured. The measured photoresponse shows gain saturation and persistent photoconductivity behavior. These effects are shown here to be related to each other, arising from a nonideal semiconductor surface. A microscopic model of the gain mechanism to explain these observations is presented. Trap density at the semiconductor metal interface, characteristic lifetime, and carrier capture coefficient are extracted from our measurements.
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Gain mechanism in GaN Schottky ultraviolet detectors
Or Katz, V. Garber, B. Meyler et al. · Applied Physics Letters · 2001 · 303 citations
Wide-bandgap Semiconductor, Optical Materials, Engineering +16