Advances in nanotechnology have generated semiconductor structures that are only a few molecular layers thick, and this has important consequences for the physics of electrons and phonons in such structures. This book describes in detail how confinement of electrons and phonons in quantum wells and wires affects the physical properties of the semiconductor. This second edition contains four new chapters on spin relaxation, based on recent theoretical research; the hexagonal wurtzite lattice; nitride structures, whose novel properties stem from their spontaneous electric polarization; and terahertz sources, which includes an account of the controversies that surrounded the concepts of Bloch oscillations and Wannier-Stark states. The book is unique in describing the microscopic theory of optical phonons, the radical change in their nature due to confinement, and how they interact with electrons. It will interest graduate students and researchers working in semiconductor physics.
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B. K. Ridley is Professor Emeritus in the Department of Computing and Electronic Systems at the University of Essex, Colchester. He is a Fellow of the Royal Society, and was awarded the Paul Dirac Prize and Medal in 2001 by the Institute of Physics.
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Paperback. Condición: new. Paperback. Advances in nanotechnology have generated semiconductor structures that are only a few molecular layers thick, and this has important consequences for the physics of electrons and phonons in such structures. This book describes in detail how confinement of electrons and phonons in quantum wells and wires affects the physical properties of the semiconductor. This second edition contains four new chapters on spin relaxation, based on recent theoretical research; the hexagonal wurtzite lattice; nitride structures, whose novel properties stem from their spontaneous electric polarization; and terahertz sources, which includes an account of the controversies that surrounded the concepts of Bloch oscillations and Wannier-Stark states. The book is unique in describing the microscopic theory of optical phonons, the radical change in their nature due to confinement, and how they interact with electrons. It will interest graduate students and researchers working in semiconductor physics. With new chapters on spin relaxation, the hexagonal wurtzite lattice, nitride structures, and terahertz sources, this second edition will interest graduate students and researchers in semiconductor physics. It is unique in describing the microscopic theory of optical phonons, their change in nature due to confinement, and their interaction with electrons. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9781107424579
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Condición: New. A second edition with four new chapters for graduate students and researchers in semiconductor physics. Num Pages: 422 pages, illustrations. BIC Classification: PHFC; TBN; TJFD. Category: (P) Professional & Vocational. Dimension: 244 x 170 x 22. Weight in Grams: 670. . 2014. 2nd Edition. paperback. . . . . Nº de ref. del artículo: V9781107424579
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