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This is the first book to describe thoroughly the many facets of doping in compound semiconductors. Equal emphasis is given to the fundamental materials physics and to the technological aspects of doping. The author describes in detail all the various techniques, including doping during epitaxial growth, doping by implantation, and doping by diffusion. The key characteristics of all dopants that have been employed in III-V semiconductors are discussed. In addition, general characteristics of dopants are analyzed, including the electrical activity, saturation, amphotericity, auto-compensation and maximum attainable dopant concentration. The timely topic of highly doped semiconductors is discussed as well. Technologically important deep levels are summarized. The properties of deep levels are presented phenomenologically. The final chapter is dedicated to the experimental characterization of impurities.
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#TELE:TMIC --- Compound semiconductors --- Mathematical models. --- Semiconductors --- Mathematical models
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Compound semiconductors --- Crystal growth --- Molecular beam epitaxy --- Surfaces --- Congresses
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Compound Comprehension in Isolation and in Context: Contribution of Conceptual and Discourse Knowledge to the Comprehension of German Novel Noun-noun Compounds.
Compound words --- Compound words. --- -Compound words --- German language --- -German language --- -Ashkenazic German language --- Hochdeutsch --- Judaeo-German language (German) --- Judendeutsch language --- Judeo-German language (German) --- Jüdisch-Deutsch language --- Jüdischdeutsch language --- Noun --- Word formation --- Lexicology. Semantics --- Ashkenazic German language --- Germanic languages --- Word formation. --- Noun.
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A semiconductor interface is the contact between the semiconductor and a metal. The interface is a site of change, and it is imperative to ensure the semiconducting material is sealed at this point to maintain its reliability. This book examines various aspects of interfaces, showing how they can affect microstructures and devices such as infrared photodetectors and blue diode lasers. It presents various techniques for examining different types of semiconductor material and suggests potential commercial applications for different semiconductor devices. Written by experts, this comprehensive overview of recent developments is an essential reference source for those working in the semiconductor industry:
621.3'7 --- Semiconductors --- -Compound semiconductors --- -Superlattices as materials --- #KVIV:BB --- Semiconductor superlattices --- Superlattice semiconductors --- Materials --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electrical engineering --- Electronics --- Solid state electronics --- Electrical engineering--?'7 --- Surfaces --- Compound semiconductors --- Superlattices as materials. --- Surfaces. --- 621.3'7 Electrical engineering--?'7 --- Superlattices as materials
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Compound semiconductors --- Infrared detectors --- Quantum wells --- Superlattices as materials --- Semiconductor superlattices --- Superlattice semiconductors --- Wells, Quantum --- Materials --- Electronics and optics of solids --- Semiconductors --- Energy-band theory of solids --- Potential theory (Physics)
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