Abstract
Ga(In)SbBi alloys grown by molecular-beam epitaxy on GaSb substrates with up to 5.5% In and 1.8% Bi were studied by temperature- and power-dependent photoluminescence (PL) and compared to previous photoreflectance (PR) results. High energy and low energy PL peaks were observed and attributed respectively to Ga(In)SbBi bandgap-related emission and native acceptor-related emission. For GaSbBi below 100 K, the HE peak is at slightly lower energy than the bandgap determined from PR, indicating carrier localization. This phenomenon is significantly weaker in PL of GaInSbBi alloys, suggesting that the presence of indium improves the optical quality over that of GaSbBi.
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Linhart, W. M., Gladysiewicz, M., Kopaczek, J., Rajpalke, M. K., Ashwin, M. J., Veal, T. D., & Kudrawiec, R. (2017). Indium-incorporation enhancement of photoluminescence properties of Ga(In)SbBi alloys. Journal of Physics D: Applied Physics, 50(37). https://doi.org/10.1088/1361-6463/aa7e64
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