Low-Dimensional Structures in Semiconductors: From Basic Physics to Applications by A.R. PeakerLow-Dimensional Structures in Semiconductors: From Basic Physics to Applications by A.R. Peaker

Low-Dimensional Structures in Semiconductors: From Basic Physics to Applications

EditorA.R. Peaker, H.G. Grimmeiss

Hardcover | January 31, 1992

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A series of lectures about structures that seem likely to play an important role in the next generation of electronic devices, presented at a workshop in Erice, Sicily, July 1990. They discuss the basic concepts of low-dimensional structures, the growth and fabrication of the relevant epitaxy, techniques of reducing structures to one or zero dimensions, interfaces, and the possible applications in devices. (c) by Book News, Inc., Portland, OR.

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Title:Low-Dimensional Structures in Semiconductors: From Basic Physics to ApplicationsFormat:HardcoverDimensions:440 pages, 10 × 7.01 × 0.1 inPublished:January 31, 1992Publisher:Springer US

The following ISBNs are associated with this title:

ISBN - 10:0306440865

ISBN - 13:9780306440861

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Table of Contents

Concepts: The Valence Sub-Bands of Biased Semiconductor Heterostructures; R. Ferreira, et al. Impurities in Semiconductors; H.G. Grimmeiss, et al. Photoluminescence of 3D and Low Dimensional Systems; B. Hamilton. Growth and Fabrication: Fabrication of Artificially Layered IIIV Semiconductors by Beam Epitaxy and Aspects of Additional Lateral patterning; K. Ploog. Metal Organic Vapor Phase Epitaxy for the Growth of Semiconductor Structures and Strined Layers; M.R. Leys. Submicron Patterning Techniques for integrated Circuits; W. Beinvogl, et al. Quantum Wires and Dots: The Challenge to Fabrication Technology; S.P. Beaumont. Interfaces: Chemical Interfaces, Structure Properties and Relaxation; A. Ourmazd. CapacitanceVoltage Profiling of Multilayer Semiconductor Structures; J.S. Rimmer, et al. Devices: Concepts and Applications of Band Structure Engineering in Optoelectronics; M. Jaros. Optical Properties of Low Dimensional Structures for Applications to Lasers, Electro-Optic and NonLinear Optical Devices; C. Wesibuch. Hot Electron Devices; M. Heiblum. Hot Electrons and Degradation Effects in FET Devices; F. Koch. Index.