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非对称量子阱对基于InGaN的发光二极管结构和光学性质的影响。

Effects of Asymmetric Quantum Wells on the Structural and Optical Properties of InGaN-Based Light-Emitting Diodes.

作者信息

Tsai Chia-Lung, Wu Wei-Che

机构信息

Department of Electronic Engineering and Green Technology Research Center, Chang Gung University, Taoyuan 333, Taiwan.

出版信息

Materials (Basel). 2014 May 12;7(5):3758-3771. doi: 10.3390/ma7053758.

Abstract

A metalorganic vapor phase epitaxy-grown InGaN/GaN multiple-quantum-well (MQW) with three graded-thickness wells (the first-grown well had the greatest width) near the n-GaN was used as the active layer of an LED. For LEDs with an asymmetric quantum well (AQW), high-resolution X-ray diffraction and transmission electron microscopic reveal that the modified MQWs with a reasonable crystalline quality were coherently strained on the underlying GaN epilayers without any relaxation. In addition, the slight increase of indium segregation in the LED with an AQW may be attributed to variations in indium contents experienced during epitaxial growth of the wide well-containing MQWs. By preventing the energetic electrons from accumulating at the topmost quantum well nearest the p-GaN, the presence of light intensity roll-off in the LED with an AQW is shifted to higher currents and the corresponding maximum light output power is increased with a ratio 7.9% higher than that of normal LEDs. Finally, similar emission wavelengths were observed in the electroluminescence spectra of both LEDs, suggesting that light emitted mostly from the top quantum wells (near the p-GaN) while the emissions from the AQW region were insignificant.

摘要

一种通过金属有机气相外延生长的InGaN/GaN多量子阱(MQW)被用作发光二极管(LED)的有源层,该多量子阱在n型GaN附近有三个渐变厚度的阱(第一个生长的阱宽度最大)。对于具有非对称量子阱(AQW)的LED,高分辨率X射线衍射和透射电子显微镜显示,具有合理晶体质量的改性多量子阱在底层GaN外延层上相干应变,没有任何弛豫。此外,具有AQW的LED中铟偏析的轻微增加可能归因于在含宽阱的多量子阱外延生长过程中铟含量的变化。通过防止高能电子在最靠近p型GaN的最顶层量子阱处积累,具有AQW的LED中光强滚降的出现被转移到更高电流,并且相应的最大光输出功率提高,比普通LED高7.9%。最后,在两种LED的电致发光光谱中观察到相似的发射波长,这表明光主要从顶部量子阱(靠近p型GaN)发射,而来自AQW区域的发射不显著。

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