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Applied Solid State Science Advances in Materials and Device Research

SKU: 9781483214733

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Applied Solid State Science Advances in Materials and Device Research

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ISBN

9781483214733, 9780120029044

Publisher

Academic Press

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PDF and EPUB

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Applied Solid State Science: Advances in Materials and Device Research, Volume 4 covers articles on single crystal compound semiconductors and complex polycrystalline materials. The book discusses narrow gap semiconductors and solid state batteries. The text then describes the advantages of hot-pressed microcrystalline compacts of oxygen-octahedra ferroelectrics over single crystal materials, as well as heterostructure junction lasers. Solid state physicists, materials scientists, electrical engineers, and graduate students studying the subjects being discussed will find the book invaluable.

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Applied Solid State Science Advances in Materials and Device Research

SKU: 9781483214702

Original price was: $72.95.Current price is: $24.99.

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Applied Solid State Science Advances in Materials and Device Research

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Edition
ISBN

9781483214702, 9780120029013

Publisher

Academic Press

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PDF and EPUB

Description

Applied Solid State Science: Advances in Materials and Device Research, Volume 1 presents articles about junction electroluminescence; metal-insulator-semiconductor (MIS) physics; ion implantation in semiconductors; and electron transport through insulating thin films. The book describes the basic physics of carrier injection; energy transfer and recombination mechanisms; state of the art efficiencies; and future prospects for light emitting diodes. The text then discusses solid state spectroscopy, which is the pair spectra observed in gallium phosphide photoluminescence. The extensive studies of MIS diodes that have led to detailed understanding of the silicon-silicon dioxide interface, as well as the devices that can be fabricated by ion implantation in semiconductors are also considered. The book further tackles fundamental mechanisms of electron transport through insulating thin films; mechanisms that influence the design of many thin film; and semiconductor devices. Solid state physicists, materials scientists, electrical engineers, and graduate students working near the subjects being discussed will find the book invaluable.

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Applied Solid State Science Advances in Materials and Device Research

SKU: 9781483214726

Original price was: $72.95.Current price is: $24.99.

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Applied Solid State Science Advances in Materials and Device Research

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Edition
ISBN

9781483214726, 9780120029037

Publisher

Academic Press

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PDF and EPUB

Description

Applied Solid State Science: Advances in Materials and Device Research, Volume 3 covers reviews that are directly related to the two devices which are the epitome of applied solid state science – the transistor and the laser. The book discusses the physics of multilayer-gate IGFET memories; the application of the transient charge technique in drift velocity; and trapping in semiconductors and in materials used in xerography, nuclear particle detectors, and space-charge-limited devices; as well as thin film transistors. The text describes the manipulation of laser beams in solids and discusses the diffraction of light by sound waves and the uses of this interaction. The electrooptical and nonlinear optical properties of crystals are also considered, with emphasis on ferroelectric crystals of the oxygen octahedra class. Solid state physicists, materials scientists, electrical engineers, and graduate students studying the subjects being discussed will find the book invaluable.

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Applied Solid State Science Advances in Materials and Device Research

SKU: 9781483214757

Original price was: $72.95.Current price is: $24.99.

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Applied Solid State Science Advances in Materials and Device Research

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Edition
ISBN

9781483214757, 9780120029068

Publisher

Academic Press

Format

PDF and EPUB

Description

Applied Solid State Science: Advances in Materials and Device Research, Volume 6 covers the application of composites in electronic systems. The book discusses different types of composite-composite materials consisting of finely dispersed mixtures of metals and insulators; composite devices in which two distinct semiconductor devices are combined in one package; and composite glass fibers with the core and cladding differing in their optical properties. The text describes articles dealing with properties that can be achieved in versatile materials; light-emitting diodes and photodetectors that provide optical coupling between separate electronic subsystems; and the physics of III-V compounds used in LEDs and the technology of silicon processing of the photodetectors. Optical communications system and the methods for achieving the transparency of the core and cladding glasses are also looked into. The book further tackles methods of fabricating the fibers and measuring their attenuation, as well as cabling and splicing techniques which have made possible a full-scale field trial of this most promising transmission system. Professionals dealing with semiconductors and electronics engineers will find the book invaluable.

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Applied Solid State Science Advances in Materials and Device Research

SKU: 9781483214719

Original price was: $72.95.Current price is: $24.99.

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Applied Solid State Science Advances in Materials and Device Research

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Edition
ISBN

9781483214719, 9780120029020

Publisher

Academic Press

Format

PDF and EPUB

Description

Applied Solid State Science: Advances in Materials and Device Research, Volume 2 covers topics about complex oxide materials such as the garnets, which dominate the field of magnetoelasticity and are among the most important laser hosts, and sodalite, which is one of the classic photochromic materials. The book discusses the physics of the interactions of electromagnetic, elastic, and spin waves in single crystal magnetic insulators. The text then describes the mechanism on which inorganic photochromic materials are based, as observed in a variety of materials in single crystal, powder, and glass forms; as well as the chemistry and growth of single crystal materials. Solid state physicists, materials scientists, electrical engineers, and graduate students studying the subjects being discussed will find the book invaluable.