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- W1567297941 abstract "The recent progress in growth of nitride based semiconductor structures made by plasma assisted MBE is presented. This technology is ammonia free and nitrogen for growth is activated in RF plasma source from nitrogen molecules. The new growth mechanism | adlayer enhanced lateral difiusion of adatoms on semiconductor surface is studied in plasma assisted MBE. This mechanism enables us to achieve high quality step-∞ow epitaxy at temperatures 600i750 ‐ C, much lower than expected from classical estimates based on the melting point of GaN. We show that growth at low temperatures in metal rich (gallium or indium) regime, together with use of low dislocation bulk GaN substrates, results in high quality of (In, Al, Ga)N layers and sharp interfaces. We demonstrate record high mobility of two-dimensional electron gas at GaN/AlGaN interface (with mobility exceeding 100 000 cm 2 /(V s) at 4.2 K and 2500 cm 2 /(V s) at 300 K) and report on flrst blue-violet InGaN multiquantum well laser diodes, operating in 407{422 nm wavelengths range. In this paper, we discuss also properties of strain compensated InAlN/InGaN multiquantum wells grown by plasma assisted MBE which are very attractive for telecommunication applications at 1.5 „m wavelengths like electro-optical modulators or all-optical switches." @default.
- W1567297941 created "2016-06-24" @default.
- W1567297941 creator A5052995843 @default.
- W1567297941 date "2005-10-01" @default.
- W1567297941 modified "2023-09-23" @default.
- W1567297941 title "From High Electron Mobility GaN/AlGaN Heterostructures to Blue-Violet InGaN Laser Diodes. Perspectives of MBE for Nitride Optoelectronics" @default.
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- W1567297941 doi "https://doi.org/10.12693/aphyspola.108.635" @default.
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