Author:
Jeong Myoungho,Lee Hyo Sung,Han Seok Kyu,Eun-Jung-Shin ,Hong Soon-Ku,Lee Jeong Yong,Park Yun Chang,Yang Jun-Mo,Yao Takafumi
Abstract
AbstractThe growth of high-quality indium (In)-rich InXGa1−XN alloys is technologically important for applications to attain highly efficient green light-emitting diodes and solar cells. However, phase separation and composition modulation in In-rich InXGa1−XN alloys are inevitable phenomena that degrade the crystal quality of In-rich InXGa1−XN layers. Composition modulations were observed in the In-rich InXGa1−XN layers with various In compositions. The In composition modulation in the InXGa1−XN alloys formed in samples with In compositions exceeding 47%. The misfit strain between the InGaN layer and the GaN buffer retarded the composition modulation, which resulted in the formation of modulated regions 100 nm above the In0.67Ga0.33N/GaN interface. The composition modulations were formed on the specific crystallographic planes of both the {0001} and {0114} planes of InGaN.
Publisher
Cambridge University Press (CUP)
Cited by
2 articles.
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