材料科学
异质结
光电子学
位错
应力松弛
宽禁带半导体
电子迁移率
制作
硅
复合材料
医学
病理
蠕动
替代医学
作者
Jianpeng Cheng,Xuelin Yang,Ling Sang,Lei Guo,Anqi Hu,Fujun Xu,Ning Tang,Xinqiang Wang,Bo Shen
摘要
A large lattice-mismatch induced stress control technology with a low Al content AlGaN layer has been used to grow high quality GaN layers on 4-in. Si substrates. The use of this technology allows for high mobility AlGaN/GaN heterostructures with electron mobility of 2040 cm2/(V·s) at sheet charge density of 8.4 × 1012 cm−2. Strain relaxation and dislocation evolution mechanisms have been investigated. It is demonstrated that the large lattice mismatch between the low Al content AlGaN layer and AlN buffer layer could effectively promote the edge dislocation inclination with relatively large bend angles and therefore significantly reduce the dislocation density in the GaN epilayer. Our results show a great potential for fabrication of low-cost and high performance GaN-on-Si power devices.
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