Quantum-dot heterostructure lasers

Quantum-dot (QD) heterostructures are nanoscale coherent insertions of narrow-gap material in a single-crystalline matrix. These tiny structures provide unique opportunities to modify and extend all basic principles of heterostructure lasers and advance their applications. Despite early predictions,...

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Veröffentlicht in:IEEE journal of selected topics in quantum electronics 2000-05, Vol.6 (3), p.439-451
Hauptverfasser: Ledentsov, N.N., Grundmann, M., Heinrichsdorff, F., Bimberg, D., Ustinov, V.M., Zhukov, A.E., Maximov, M.V., Alferov, Zh.I., Lott, J.A.
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Sprache:eng
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Zusammenfassung:Quantum-dot (QD) heterostructures are nanoscale coherent insertions of narrow-gap material in a single-crystalline matrix. These tiny structures provide unique opportunities to modify and extend all basic principles of heterostructure lasers and advance their applications. Despite early predictions, fabrication of QD heterostructure (QDHS) lasers appeared to be a much more challenging task, as compared to quantum well (QW) devices. The breakthrough occurred when techniques for self-organized growth of QD's allowed the fabrication of dense arrays of coherent islands, uniform in shape and size, and, simultaneously, free from undesirable defects. Recently, the figure of merit of QDHS lasers surpasses some of the key characteristics of QW devices in some of the most important applications.
ISSN:1077-260X
1558-4542
DOI:10.1109/2944.865099