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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

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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.

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What this paper is about

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.

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Available 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.

Key concepts: Cathodoluminescence, Spectral line, Quantum well, Luminescence, Materials science, Atomic physics, Molecular physics, Chemistry

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