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首页> 外文期刊>Applied Sciences >Efficiency Droop and Effective Active Volume in GaN-Based Light-Emitting Diodes Grown on Sapphire and Silicon Substrates
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Efficiency Droop and Effective Active Volume in GaN-Based Light-Emitting Diodes Grown on Sapphire and Silicon Substrates

机译:蓝宝石和硅基板上生长的GaN的发光二极管效率下垂和有效活性量

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We compared the efficiency droop of InGaN multiple-quantum-well (MQW) blue light-emitting diode (LED) structures grown on silicon(111) and c -plane sapphire substrates and analyzed the efficiency droop characteristics using the rate equation model with reduced effective active volume. The efficiency droop of the LED sample on silicon was observed to be reduced considerably compared with that of the identical LED sample on sapphire substrates. When the measured external quantum efficiency was fitted with the rate equation model, the effective active volume of the MQW on silicon was found to be ~1.45 times larger than that of the MQW on sapphire. The lower efficiency droop in the LED on silicon could be attributed to its larger effective active volume compared with the LED on sapphire. The simulation results showed that the effective active volume decreased as the internal electric fields increased, as a result of the reduced overlap of the electron and hole distribution inside the quantum well and the inhomogeneous carrier distribution in the MQWs. The difference in the internal electric field of the MQW between the LED on silicon and sapphire could be a major reason for the difference in the effective active volume, and consequently, the efficiency droop.
机译:比较了在硅(111)和C平面蓝宝石基板上生长的IngaN多量子阱(MQW)蓝色发光二极管(LED)结构的效率下垂,并使用速率方程模型分析了效率下垂特性,减少了有效积极的音量。观察到硅上的LED样品的效率下垂,与蓝宝石衬底上相同的LED样品相比,显着降低。当测量的外部量子效率配有速率方程模型时,发现MQW上的MQW的有效活跃量比蓝宝石上的MQW大约1.45倍。与蓝宝石上的LED相比,硅的LED中的较低效率下降可能归因于其较大的有效活跃量。模拟结果表明,由于内部电场增加,所需的有效活性体积减小,由于量子阱内的电子和孔分布的重叠和MQWS中的不均匀载体分布的重叠,因此随着电子和孔分布的重叠而降低。硅和蓝宝石的LED之间MQW之间的内部电场的差异可能是有效主动量差异的主要原因,因此效率下垂。

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