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Solid State Physics: Principles and Modern Applications

Intended for a two semester advanced undergraduate or graduate course in Solid State Physics, this treatment offers modern coverage of the theory and related experiments, including the group theoretical approach to band structures, Moessbauer recoil free fraction, semi-classical electron theory, mag...

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Detalles Bibliográficos
Autores principales: Quinn, John J, Yi, Kyung-Soo
Lenguaje:eng
Publicado: Springer 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-540-92231-5
http://cds.cern.ch/record/1338989
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author Quinn, John J
Yi, Kyung-Soo
author_facet Quinn, John J
Yi, Kyung-Soo
author_sort Quinn, John J
collection CERN
description Intended for a two semester advanced undergraduate or graduate course in Solid State Physics, this treatment offers modern coverage of the theory and related experiments, including the group theoretical approach to band structures, Moessbauer recoil free fraction, semi-classical electron theory, magnetoconductivity, electron self-energy and Landau theory of Fermi liquid, and both quantum and fractional quantum Hall effects. Integrated throughout are developments from the newest semiconductor devices, e.g. space charge layers, quantum wells and superlattices. The first half includes all material usually covered in the introductory course, but in greater depth than most introductory textbooks. The second half includes most of the important developments in solid-state researches of the past half century, addressing e.g. optical and electronic properties such as collective bulk and surface modes and spectral function of a quasiparticle, which is a basic concept for understanding LEED intensities, X ray fine structure spectroscopy and photoemission. So both the fundamental principles and most recent advances in solid state physics are explained in a class-tested tutorial style, with end-of-chapter exercises for review and reinforcement of key concepts and calculations.
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spelling cern-13389892021-04-22T01:02:17Zdoi:10.1007/978-3-540-92231-5http://cds.cern.ch/record/1338989engQuinn, John JYi, Kyung-SooSolid State Physics: Principles and Modern ApplicationsGeneral Theoretical PhysicsIntended for a two semester advanced undergraduate or graduate course in Solid State Physics, this treatment offers modern coverage of the theory and related experiments, including the group theoretical approach to band structures, Moessbauer recoil free fraction, semi-classical electron theory, magnetoconductivity, electron self-energy and Landau theory of Fermi liquid, and both quantum and fractional quantum Hall effects. Integrated throughout are developments from the newest semiconductor devices, e.g. space charge layers, quantum wells and superlattices. The first half includes all material usually covered in the introductory course, but in greater depth than most introductory textbooks. The second half includes most of the important developments in solid-state researches of the past half century, addressing e.g. optical and electronic properties such as collective bulk and surface modes and spectral function of a quasiparticle, which is a basic concept for understanding LEED intensities, X ray fine structure spectroscopy and photoemission. So both the fundamental principles and most recent advances in solid state physics are explained in a class-tested tutorial style, with end-of-chapter exercises for review and reinforcement of key concepts and calculations.Springeroai:cds.cern.ch:13389892009
spellingShingle General Theoretical Physics
Quinn, John J
Yi, Kyung-Soo
Solid State Physics: Principles and Modern Applications
title Solid State Physics: Principles and Modern Applications
title_full Solid State Physics: Principles and Modern Applications
title_fullStr Solid State Physics: Principles and Modern Applications
title_full_unstemmed Solid State Physics: Principles and Modern Applications
title_short Solid State Physics: Principles and Modern Applications
title_sort solid state physics: principles and modern applications
topic General Theoretical Physics
url https://dx.doi.org/10.1007/978-3-540-92231-5
http://cds.cern.ch/record/1338989
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