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    Liu Zi-Yang, Zhang Jin-Cheng, Duan Huan-Tao, Xue Jun-Shuai, Lin Zhi-Yu, Ma Jun-Cai, Xue Xiao-Yong, Hao Yue. Effects of the strain relaxation of an AlGaN barrier layer induced by various cap layers on the transport properties in AlGaN/GaN heterostructuresJ. Chin. Phys. B, 2011, 20(9): 097701.
    Liu Zi-Yang, Zhang Jin-Cheng, Duan Huan-Tao, Xue Jun-Shuai, Lin Zhi-Yu, Ma Jun-Cai, Xue Xiao-Yong, Hao Yue. Effects of the strain relaxation of an AlGaN barrier layer induced by various cap layers on the transport properties in AlGaN/GaN heterostructuresJ. Chin. Phys. B, 2011, 20(9): 097701.
  • Effects of the strain relaxation of an AlGaN barrier layer induced by various cap layers on the transport properties in AlGaN/GaN heterostructures

    • The strain relaxation of an AlGaN barrier layer may be influenced by a thin cap layer above, and affects the transport properties of AlGaN/GaN heterostructures. Compared with the slight strain relaxation found in AlGaN barrier layer without cap layer, it is found that a thin cap layer can induce considerable changes of strain state in the AlGaN barrier layer. The degree of relaxation of the AlGaN layer significantly influences the transport properties of the two-dimensional electron gas (2DEG) in AlGaN/GaN heterostructures. It is observed that electron mobility decreases with the increasing degree of relaxation of the AlGaN barrier, which is believed to be the main cause of the deterioration of crystalline quality and morphology on the AlGaN/GaN interface. On the other hand, both GaN and AlN cap layers lead to a decrease in 2DEG density. The reduction of 2DEG caused by the GaN cap layer may be attributed to the additional negative polarization charges formed at the interface between GaN and AlGaN, while the reduction of the piezoelectric effect in the AlGaN layer results in the decrease of 2DEG density in the case of AlN cap layer.
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