The efficiency droop in light-emitting diodes (LEDs) represents a gradual decrease of the internal quantum efficiency (IQE) with increasing current. Experimentally, the IQE droops are strong functions of material, epitaxial and chip structures, and operating temperature. Recently, we have proposed an IQE droop model as the saturation of the radiative recombination rate at low current and subsequent increase in the nonradiative recombination rates at high current. Once the radiative recombination rate begins to saturate at an active region, the carrier density as well as the nonradiative recombination rate rapidly increase there. Eventually, the IQE droop appears from the increase in the nonradiative recombination rate being much larger than...
The efficiency decreases at high current, is a major problem to solid state lighting. This problem i...
In this study low temperature and high pressure techniques have been used to investigate the recombi...
This tutorial paper focuses on the physical origin of thermal droop, i.e., the decrease in the lumin...
The efficiency droop in light-emitting diodes (LEDs) represents a gradual decrease of the internal q...
We present a comprehensive model of the dependence of the internal quantum efficiency (IQE) on both ...
We present a comprehensive model of the dependence of the internal quantum efficiency (IQE) on both ...
InGaN-based blue and green light-emitting diodes are studied by temperature-dependent electrolumines...
InGaN-based blue and green light-emitting diodes are studied by temperature-dependent electrolumines...
The physical properties of InGaN-based light emitting diodes (LEDs) and laser diodes (LDs) are inves...
Two kinds of InGaN-based light-emitting diodes (LEDs) are investigated to understand the nonradiativ...
Temperature-dependent internal quantum efficiency (IQE) of multiple quantum well InGaN/GaN light-em...
Dominant nonradiative recombination mechanisms as a function of nonradiative current were investigat...
Dominant nonradiative recombination mechanisms as a function of nonradiative current were investigat...
Temperature-dependent internal quantum efficiency (IQE) of multiple quantum well InGaN/GaN light-em...
Two kinds of InGaN-based light-emitting diodes (LEDs) are investigated to understand the nonradiativ...
The efficiency decreases at high current, is a major problem to solid state lighting. This problem i...
In this study low temperature and high pressure techniques have been used to investigate the recombi...
This tutorial paper focuses on the physical origin of thermal droop, i.e., the decrease in the lumin...
The efficiency droop in light-emitting diodes (LEDs) represents a gradual decrease of the internal q...
We present a comprehensive model of the dependence of the internal quantum efficiency (IQE) on both ...
We present a comprehensive model of the dependence of the internal quantum efficiency (IQE) on both ...
InGaN-based blue and green light-emitting diodes are studied by temperature-dependent electrolumines...
InGaN-based blue and green light-emitting diodes are studied by temperature-dependent electrolumines...
The physical properties of InGaN-based light emitting diodes (LEDs) and laser diodes (LDs) are inves...
Two kinds of InGaN-based light-emitting diodes (LEDs) are investigated to understand the nonradiativ...
Temperature-dependent internal quantum efficiency (IQE) of multiple quantum well InGaN/GaN light-em...
Dominant nonradiative recombination mechanisms as a function of nonradiative current were investigat...
Dominant nonradiative recombination mechanisms as a function of nonradiative current were investigat...
Temperature-dependent internal quantum efficiency (IQE) of multiple quantum well InGaN/GaN light-em...
Two kinds of InGaN-based light-emitting diodes (LEDs) are investigated to understand the nonradiativ...
The efficiency decreases at high current, is a major problem to solid state lighting. This problem i...
In this study low temperature and high pressure techniques have been used to investigate the recombi...
This tutorial paper focuses on the physical origin of thermal droop, i.e., the decrease in the lumin...