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首页> 外文期刊>Electron Devices, IEEE Transactions on >Investigation of Efficiency-Droop Mechanisms in Multi-Quantum-Well InGaN/GaN Blue Light-Emitting Diodes
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Investigation of Efficiency-Droop Mechanisms in Multi-Quantum-Well InGaN/GaN Blue Light-Emitting Diodes

机译:多量子阱InGaN / GaN蓝光发光二极管效率下降机理的研究

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摘要

Efficiency-droop mechanisms and related technological remedies are critically analyzed in multi-quantum-well (QW) InGaN/GaN blue light-emitting diodes by means of numerical device simulations and their comparison with experimental data. Auger recombination, electron leakage, and incomplete QW carrier capture can separately produce droop effects in quantitative agreement with experimental data, but “extreme” values, at the limit of or outside their generally accepted range, must be imposed for related droop-controlling parameters. Less stringent conditions are needed if combinations of the aforementioned mechanisms are assumed to act jointly. Applying technological/structural modifications like QW thickness or number increase and barrier p-type doping leads to distinctive effects on droop characteristics depending on the assumed droop mechanism. Increasing the QW number appears, in particular, to be the most effective droop remedy in case the phenomenon is induced by Auger recombination. Possible technology-dependent variation of droop-controlling parameters and/or multiple droop mechanisms can, however, make discrimination of droop origin on the basis of the effects of applied technological remedies very difficult.
机译:通过数值器件仿真及其与实验数据的比较,对多量子阱(QW)InGaN / GaN蓝色发光二极管中的效率下降机制和相关技术补救措施进行了严格的分析。俄歇复合,电子泄漏和不完全的QW载流子捕获可分别产生与实验数据定量一致的下垂效应,但是必须对相关的下垂控制参数施加“极限”值,该值必须在其公认的范围之内或之外。如果假定上述机制的组合共同起作用,则需要的条件不太严格。根据假定的下垂机制,应用诸如QW厚度或数量增加以及p型势垒掺杂等技术/结构更改会导致对下垂特性的显着影响。如果通过俄歇重组引起现象,则增加QW数尤其是最有效的下垂补救措施。然而,下垂控制参数和/或多个下垂机制的可能取决于技术的变化可能使基于所应用的技术补救措施的效果而对下垂来源的区分变得非常困难。

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