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Design and Realization of Novel GaAs Based Laser Concepts (Hardcover, 2012 ed.): Tim David Germann Design and Realization of Novel GaAs Based Laser Concepts (Hardcover, 2012 ed.)
Tim David Germann
R2,781 Discovery Miles 27 810 Ships in 10 - 15 working days

Semiconductor heterostructures represent the backbone for an increasing variety of electronic and photonic devices, for applications including information storage, communication and material treatment, to name but a few. Novel structural and material concepts are needed in order to further push the performance limits of present devices and to open up new application areas. This thesis demonstrates how key performance characteristics of three completely different types of semiconductor lasers can be tailored using clever nanostructure design and epitaxial growth techniques. All aspects of laser fabrication are discussed, from design and growth of nanostructures using metal-organic vapor-phase epitaxy, to fabrication and characterization of complete devices.

Design and Realization of Novel GaAs Based Laser Concepts (Paperback, Softcover reprint of the original 1st ed. 2012): Tim... Design and Realization of Novel GaAs Based Laser Concepts (Paperback, Softcover reprint of the original 1st ed. 2012)
Tim David Germann
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

Semiconductor heterostructures represent the backbone for an increasing variety of electronic and photonic devices, for applications including information storage, communication and material treatment, to name but a few. Novel structural and material concepts are needed in order to further push the performance limits of present devices and to open up new application areas. This thesis demonstrates how key performance characteristics of three completely different types of semiconductor lasers can be tailored using clever nanostructure design and epitaxial growth techniques. All aspects of laser fabrication are discussed, from design and growth of nanostructures using metal-organic vapor-phase epitaxy, to fabrication and characterization of complete devices.

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