Applied Physics Letters · 2014 · 70 citations · 28 references
EngineeringLight-emitting DiodesLed DeviceEfficiency DroopCompound SemiconductorTemperature-dependent MeasurementsPhotonicsElectrical EngineeringPhotoluminescencePhysicsNonradiative Recombination MechanismsNew Lighting TechnologyAluminum Gallium NitrideMicroelectronicsCategoryiii-v SemiconductorWhite OledSolid-state LightingIngan-based Light-emitting DiodesApplied PhysicsGan Power DeviceIngan/gan-based Light-emitting DiodesOptoelectronics
Two kinds of InGaN-based light-emitting diodes (LEDs) are investigated to understand the nonradiative carrier recombination processes. Various temperature-dependent measurements such as external quantum efficiency, current-voltage, and electroluminescence spectra are utilized from 50 to 300 K. Based on these experimental results, we analyze the dominant nonradiative recombination mechanism for each LED device. We also analyze the effect of the dominant nonradiative recombination mechanism on the efficiency droop. On the basis of correlation between the efficiency droop and nonradiative recombination mechanisms, we discuss an approach to reducing the efficiency droop for each LED device.
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