Solid-State Physics
Introduction to the Theory
(Sprache: Englisch)
While the standard solid state topics are covered, the basic ones often have more detailed derivations than is customary (with an empasis on crystalline solids).
Several recent topics are introduced, as are some subjects normally included only in...
Several recent topics are introduced, as are some subjects normally included only in...
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While the standard solid state topics are covered, the basic ones often have more detailed derivations than is customary (with an empasis on crystalline solids). Several recent topics are introduced, as are some subjects normally included only in condensed matter physics. Lattice vibrations, electrons, interactions, and spin effects (mostly in magnetism) are discussed the most comprehensively.
Many problems are included whose level is from "fill in the steps" to long and challenging, and the text is equipped with references and several comments about experiments with figures and tables. Learning Solid State Physics involves a certain degree of maturity, since it involves tying together diverse concepts from many areas of physics. The objective is to understand, in a basic way, how solid materials behave. To do this one needs both a good physical and mathematical background. One definition of Solid State Physics is it is the study of the physical (e.g. the electrical, dielectric, magnetic, elastic, and thermal) properties of solids in terms of basic physical laws. In one sense, Solid State Physics is more like chemistry than some other branches of physics because it focuses on common properties of large classes of materials. It is typical that Solid State Physics emphasizes how physics properties link to electronic structure. We have retained the term Solid State Physics, even though Condensed Matter Physics is more commonly used. Condensed Matter Physics includes liquids and non-crystalline solids such as glass, which we shall not discuss in detail. Modern Solid State Physics came of age in the late thirties and forties, and had its most extensive expansion with the development of the transistor, integrated circuits, and microelectronics. Most of microelectronics however is limited to the properties of inhomogeneously doped semiconductors. Solid State Physics includes many other areas of course; among the largest of these are ferromagnetic materials, and
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superconductors. Just a little less than half of all working physicists are in Condensed Matter.
A course in Solid State Physics typically begins with three broad areas: (1) How and why atoms bind together to form solids, (2) Lattice Vibrations and Phonons, and (3) Electrons in Solids. One would then typically apply the above to (4) Interactions especially of electrons with phonons, (5) Metals, the Fermi Surface and Alloys, (6) Semiconductors, (7) Magnetism, (8) Superconductivity, (9) Dielectrics and Ferroelectrics, (10) Optical Properties, (11) Defects, and (12) Certain other modern topics such as layered materials, quantum Hall effect, mesoscopics, nanophysics, and soft condensed matter. In this book, we will consider all of these.
A course in Solid State Physics typically begins with three broad areas: (1) How and why atoms bind together to form solids, (2) Lattice Vibrations and Phonons, and (3) Electrons in Solids. One would then typically apply the above to (4) Interactions especially of electrons with phonons, (5) Metals, the Fermi Surface and Alloys, (6) Semiconductors, (7) Magnetism, (8) Superconductivity, (9) Dielectrics and Ferroelectrics, (10) Optical Properties, (11) Defects, and (12) Certain other modern topics such as layered materials, quantum Hall effect, mesoscopics, nanophysics, and soft condensed matter. In this book, we will consider all of these.
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Inhaltsverzeichnis zu „Solid-State Physics “
Crystal Binding and Structure.- Lattice Vibrations and Thermal Properties.- Electrons in Periodic Potentials.- The Interaction of Electrons and Lattice Vibrations.- Metals, Alloys, and the Fermi Surface.- Semiconductors.- Magnetism, Magnons, and Magnetic Resonance.- Superconductivity.- Dielectrics and Ferroelectrics.- Optical Properties of Solids.- Defects in Solids.- Current Topics in Solid Condensed Matter Physics.
Autoren-Porträt von James Patterson, Bernard Bailey
James Patterson wuchs in Newburgh, New York, auf, studierte englische Literatur am Manhattan College und an der Vanderbilt University. Während seines Studiums, das er mit Auszeichnung abschloss, jobbte er in einer psychiatrischen Klinik. Danach war Patterson lange Zeit Chef einer großen New Yorker Werbeagentur. Nebenher begann er mit dem Schreiben von Kriminalromanen und das mit großem Erfolg. Denn bereits für seinen Debütroman erhielt er den begehrten Edgar Allan Poe Award, Amerikas wichtigsten Krimipreis. Mittlerweile gilt James Patterson als der Mann, der nur Bestseller schreibt: In den letzten Jahren standen 63 seiner Bücher auf der New York Times Hardcover-Bestsellerliste. Seine Romane wurden bisher in 38 Sprachen übersetzt und erreichten weltweit eine Gesamtauflage von über 260 Millionen Exemplaren. James Patterson lebt heute mit seiner Familie in Palm Beach, Florida.
Bibliographische Angaben
- Autoren: James Patterson , Bernard Bailey
- 2010, XVIII, 717 Seiten, 233 Schwarz-Weiß-Abbildungen, Maße: 23,5 cm, Kartoniert (TB), Englisch
- Verlag: Springer, Berlin
- ISBN-10: 3642063241
- ISBN-13: 9783642063244
Sprache:
Englisch
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