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Solid State Physics: Principles and Modern Applications (UNITEXT for Physics) - Quinn, John J. Yi, Kyung-Soo
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2018, ISBN: 9783319739991

Springer, Kindle Edition, Auflage: 2, 1109 Seiten, Publiziert: 2018-02-23T00:00:00.000Z, Produktgruppe: Digital Ebook Purchas, Education, Astronomy & Space Science, Science, Nature & Math… Mehr…

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Quinn, John J. Yi, Kyung-Soo:

Solid State Physics: Principles and Modern Applications (UNITEXT for Physics) (English Edition) - neues Buch

2018, ISBN: 9783319739991

Springer, Kindle Ausgabe, Auflage: 2, 1109 Seiten, Publiziert: 2018-02-23T00:00:00.000Z, Produktgruppe: Digital Ebook Purchas, Materialien & Gase, Ingenieurwissenschaft & Technik, Naturwi… Mehr…

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John J. Quinn/ Kyung-Soo Yi:
Solid State Physics - neues Buch

ISBN: 9783319739991

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John J. Quinn/ Kyung-Soo Yi:
Solid State Physics - neues Buch

ISBN: 9783319739991

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Details zum Buch

Detailangaben zum Buch - Solid State Physics: Principles and Modern Applications (UNITEXT for Physics)


EAN (ISBN-13): 9783319739991
Erscheinungsjahr: 2002
Herausgeber: Springer

Buch in der Datenbank seit 2017-12-24T16:16:30+01:00 (Berlin)
Detailseite zuletzt geändert am 2023-03-24T09:19:46+01:00 (Berlin)
ISBN/EAN: 9783319739991

ISBN - alternative Schreibweisen:
978-3-319-73999-1
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: john quinn
Titel des Buches: solid state physics


Daten vom Verlag:

Autor/in: John J. Quinn; Kyung-Soo Yi
Titel: UNITEXT for Physics; Solid State Physics - Principles and Modern Applications
Verlag: Springer; Springer International Publishing
594 Seiten
Erscheinungsjahr: 2018-02-23
Cham; CH
Sprache: Englisch
128,39 € (DE)
132,00 € (AT)
153,50 CHF (CH)
Available
XIX, 594 p. 249 illus., 74 illus. in color.

EA; E107; eBook; Nonbooks, PBS / Physik, Astronomie/Atomphysik, Kernphysik; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Verstehen; Solid-State Physics Textbook; Empty Lattice Band Structure; Quantum Hall Effects; Linear Response Theory; Group Theoretical Approach to Band Structures; Correlation Diagram for Two-Dimensional Electrons; Correlation Functions for Jain States; Condensed Matter Physics; B; Condensed Matter Physics; Optical Materials; Classical Electrodynamics; Quantum Physics; Physics and Astronomy; Technische Anwendung von elektronischen, magnetischen, optischen Materialien; Elektrizität, Magnetismus und Elektromagnetismus; Quantenphysik (Quantenmechanik und Quantenfeldtheorie); BC

This book provides the basis for a two-semester graduate course on solid-state physics. The first half presents all the knowledge necessary for a one-semester survey of solid-state physics, but in greater depth than most introductory solid state physics courses. The second half includes most of the important research over the past half-century, covering both the fundamental principles and most recent advances. This new edition includes the latest developments in the treatment of strongly interacting two-dimensional electrons and discusses the generalization from small to larger systems.

The book provides explanations in a class-tested tutorial style, and each chapter includes problems reviewing key concepts and calculations. The updated exercises and solutions enable students to become familiar with contemporary research activities, such as the electronic properties of massless fermions in graphene and topological insulators.

Part I.- Crystal Structures.- Lattice Vibrations.- Free Electron Theory of Metals.- Elements of Band Theory.- Use of Elementary Group Theory in Calculating Band Structure.- More Band Theory and the Semi-classical Approximation.- Semiconductors.- Dielectric Properties of Solids.- Magnetism in Solids.- Part II.- Magnetic Ordering and Spin Waves.- Many Body Interactions: Introduction.- Many Body Interactions: Green’s Function Method.- Semi-classical Theory of Electrons.- Electrodynamics of Metals.- Superconductivity.- The Fractional Quantum Hall Effect: The Paradigm for Strongly Interacting Systems.- Correlation Diagrams: An Intuitive Approach to Interactions in Quantum Hall Systems.

 (Springer, 2009) with Kyung-Soo Yi. Quinn is a recipient of many honours, including:

Fellow, American Physics Society, 1963

NATO Fellow, 1971-1972

Ford Foundation Chair in Physics, Brown University, 1985-1989

ScD Honoris Causa, Purdue University, 1992

Willis Lincoln Chair of Excellence, University of Tennessee, 1992

Outstanding Graduate Alumnus Award, Physics Department, University of Maryland, 2005

The Distinguished Alumnus Award, College of Computer, Math and Natural Sciences, University of Maryland, 2012

 (Springer, 2009) with John J. Quinn. Yi earned his Ph.D. in Physics from Brown University, Providence, Rhode Island, USA. His doctoral dissertation was under the supervision of Professor J. J. Quinn. After finishing his Ph.D.in 1982, Yi joined the postdoctoral training at Brown University, Colorado State University, and Arizona State University. In 1984 Yi joined the faculty of Physics at Pusan National University till 2015, and from there he held visiting positions at Arizona State University and the University of Tennessee.  

John J. Quinn Solid State Physics Kyung-Soo Yi Physics of Low Dimensional Electrons  Solid State Physics

This book provides the basis for a two-semester graduate course on solid-state physics. The first half presents all the knowledge necessary for a one-semester survey of solid-state physics, but in greater depth than most introductory solid state physics courses. The second half includes most of the important research over the past half-century, covering both the fundamental principles and most recent advances. This new edition includes the latest developments in the treatment of strongly interacting two-dimensional electrons and discusses the generalization from small to larger systems.

The book provides explanations in a class-tested tutorial style, and each chapter includes problems reviewing key concepts and calculations. The updated exercises and solutions enable students to become familiar with contemporary research activities, such as the electronic properties of massless fermions in graphene and topological insulators.


Offers modern coverage of the solid-state-physics theory and related experiments, including the group theoretical approach, semi-classical electron theory, and both quantum and fractional quantum Hall effects Integrates developments from the newest semiconductor devices, e.g. space charge layers, quantum wells and superlattices New approach to applying group theory to study band structures Also addresses optical and electronic properties such as collective bulk and surface modes

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