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Fundamentals of Solid State Engineering

Previously published in hardcover
BuchKartoniert, Paperback
689 Seiten
Englisch
Springererschienen am04.01.20194. Aufl.
The fourth edition of this class-tested, multi-disciplinary introduction to solid state engineering adds dozens of revised and updated sections and problems, as well as three new chapters on solar energy harvesting, thermal and photothermal energy harvesting, and photo-thermovoltaics. Combining concepts from physics, chemistry, electrical engineering, materials science, and mechanical engineering, Professor Razeghi describes electron-electron and electron-phonon interactions, the Kane effective mass method, the carbon atom, thermal properties of crystals, the harmonic oscillator, the hydrogen atom, the quantum mechanical description of angular momentum, and the origin of spin in a chapter devoted to quantum mechanics. This textbook features an improved transport theory description that goes beyond Drude theory, discussing the Boltzmann approach. Introducing students to the rigorous quantum mechanical way of thinking about and formulating transport processes, this fourth edition presents the basic physics concepts and thorough treatment of semiconductor characterization technology, designed for solid state engineers.mehr
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Produkt

KlappentextThe fourth edition of this class-tested, multi-disciplinary introduction to solid state engineering adds dozens of revised and updated sections and problems, as well as three new chapters on solar energy harvesting, thermal and photothermal energy harvesting, and photo-thermovoltaics. Combining concepts from physics, chemistry, electrical engineering, materials science, and mechanical engineering, Professor Razeghi describes electron-electron and electron-phonon interactions, the Kane effective mass method, the carbon atom, thermal properties of crystals, the harmonic oscillator, the hydrogen atom, the quantum mechanical description of angular momentum, and the origin of spin in a chapter devoted to quantum mechanics. This textbook features an improved transport theory description that goes beyond Drude theory, discussing the Boltzmann approach. Introducing students to the rigorous quantum mechanical way of thinking about and formulating transport processes, this fourth edition presents the basic physics concepts and thorough treatment of semiconductor characterization technology, designed for solid state engineers.
ZusammenfassungThis revised book provides a multi-disciplinary introduction to solid state engineering, combining concepts from physics, chemistry, electrical engineering, materials science and mechanical engineering. It includes new topics and timely application areas.
Details
ISBN/GTIN978-3-030-09305-1
ProduktartBuch
EinbandartKartoniert, Paperback
Verlag
Erscheinungsjahr2019
Erscheinungsdatum04.01.2019
Auflage4. Aufl.
Seiten689 Seiten
SpracheEnglisch
Gewicht1464 g
IllustrationenXXXI, 689 p. 399 illus., 139 illus. in color.
Artikel-Nr.46964528

Inhalt/Kritik

Inhaltsverzeichnis
Electronic Structure of Atoms.- Introduction: the carbon atom.- Crystalline Properties of Solids.- Introduction to Quantum Mechanics.- Electrons and Energy Band Structures in Crystals.- Phonons and thermal properties.- Equilibrium Charge Carrier Statistics in Semiconductors.- Non-Equilibrium Electrical Properties of Semiconductors.- Semiconductor p-n and Metal-Semiconductor Junctions.- Optical Properties of Semiconductors.- Solar Energy Harvesting.- Thermal and Photothermal energy harvesting.- Photo-thermovoltaics.- Electron-Electron Interactions: Screening.- Semiconductor Heterostructures and Low-Dimensional Quantum Structures.- Quantum Transport.- Compound Semiconductors and Crystal Growth Techniques.- Semiconductor Characterization Techniques.- Defects.- Appendices.mehr

Schlagworte

Autor

Dr. Manijeh Razeghi is Walter P. Murphy Professor of Electrical Engineering and Computer Science and Director, Center for Quantum Devices at Northwestern University in Evanston, IL. She earned the Docteur d'État ès Sciences Physiques, Université de Paris, Paris, France; a Docteur 3ème Cycle Solid State Physics, Université de Paris, Paris, France; and a DEA Science des Matériaux, Université de Paris, Paris, France. Her research interests include quantum devices, compound semiconductor science and nanotechnology, the physics of new semiconductor crystals for novel applications and realizing advanced semiconductor devices such as lasers, photodetectors, transistors, waveguides and switches.