Cathodoluminescence study of InxGa1−xN quantum wells
Eunsoon Oh, Myoung Hee Lee, Kwang Joo Kim, Mee‐Yi Ryu, Jae Ho Song, S. W. Park, P. W. Yu, H. Park, Y. Park
Abstract
Eunsoon Oh, Myoung Hee Lee, Kwang Joo Kim, Mee‐Yi Ryu, Jae Ho Song, S. W. Park, P. W. Yu, H. Park, Y. Park
Abstract
We studied the cathodoluminescence spectra of InxGa1−xN, focusing on the spatial variation of the spectra. Strong inhomogeneity of cathodoluminescence spectra was observed on 22 nm thick InxGa1−xN layers, where the peak energy varied up to 400 meV. In a double quantum well with a well width of 10 Å, the luminescence peak in a broad area spectrum was at 3.18 eV, but on some areas the peak was at 3.07 eV, the size of the area being about 1 μm. The variation of the cathodoluminescence spectra clearly indicates the presence of in-plane potential fluctuation in some InxGa1−xN samples, although the cathodoluminescence spectra of most of our quantum wells optimized for devices were found to be uniform at least within the spatial resolution limit.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We studied the cathodoluminescence spectra of InxGa1−xN, focusing on the spatial variation of the spectra. Strong inhomogeneity of cathodoluminescence spectra was observed on 22 nm thick InxGa1−xN layers, where the peak energy varied up to 400 meV. In a double quantum well with a well width of 10 Å, the luminescence peak in a broad area spectrum was at 3.18 eV, but on some areas the peak was at 3.07 eV, the size of the area being about 1 μm. The variation of the cathodoluminescence spectra clearly indicates the presence of in-plane potential fluctuation in some InxGa1−xN samples, although the cathodoluminescence spectra of most of our quantum wells optimized for devices were found to be uniform at least within the spatial resolution limit.
Key concepts: Cathodoluminescence, Spectral line, Quantum well, Luminescence, Materials science, Atomic physics, Molecular physics, Chemistry