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Introduction to solid state physics / Charles Kittel

By: Material type: TextTextPublication details: John Wiley & Sons, New Jersey : 2005Edition: 8th edDescription: xix, 680 pISBN:
  • 9780471415268
Subject(s): DDC classification:
  • 530.41 K652
Contents:
CHAPTER 1: CRYSTAL STRUCTURE. Periodic Array of Atoms -- Fundamental Types of Lattices -- Index System for Crystal Planes -- Simple Crystal Structures -- Direct Imaging of Atomic Structure -- Nonideal Crystal Structures -- Crystal Structure Data -- CHAPTER 2: WAVE DIFFRACTION AND THE RECIPROCAL LATTICE. Diffraction of Waves by Crystals -- Scattered Wave Amplitude -- Brillouin Zones -- Fourier Analysis of the Basis -- CHAPTER 3: CRYSTAL BINDING AND ELASTIC CONSTANTS. Crystals of Inert Gases -- Ionic Crystals -- Covalent Crystals -- Metals -- Hydrogen Bonds -- Atomic Radii -- Analysis of Elastic Strains -- Elastic Compliance and Stiffness Constants -- Elastic Waves in Cubic Crystals -- CHAPTER 4: PHONONS I. CRYSTAL VIBRATIONS. Vibrations of Crystals with Monatomic Basis -- Two Atoms per Primitive Basis -- Quantization of Elastic Waves -- Phonon Momentum -- Inelastic Scattering by Phonons -- CHAPTER 5: PHONONS II. THERMAL PROPERTIES. Phonon Heat Capacity -- Anharmonic Crystal Interactions -- Thermal Conductivity -- CHAPTER 6: FREE ELECTRON FERMI GAS. Energy Levels in One Dimension -- Effect of Temperature on the Fermi-Dirac Distribution -- Free Electron Gas in Three Dimensions -- Heat Capacity of the Electron Gas -- Electrical Conductivity and Ohm's Law -- Motion in Magnetic Fields -- Thermal Conductivity of Metals -- CHAPTER 7: ENERGY BANDS. Nearly Free Electron Model -- Bloch Functions -- Kronig-Penney Model -- Wave Equation of Electron in a Periodic Potential -- Number of Orbitals in a Band -- CHAPTER 8: SEMICONDUCTOR CRYSTALS. Band Gap -- Equations of Motion -- Intrinsic Carrier Concentration -- Impurity Conductivity -- Thermoelectric Effects -- Semimetals -- Superlattices -- CHAPTER 9: FERMI SURFACES AND METALS. Construction of Fermi Surfaces -- Electron Orbits, Hole Orbits, and Open Orbits -- Calculation of Energy Bands -- Experimental Methods in Fermi Surface Studies -- CHAPTER 10: SUPERCONDUCTIVITY. Experimental Survey -- Theoretical Survey -- High-Temperature Superconductors. CHAPTER 11: DIAMAGNETISM AND PARAMAGNETISM. Langevin Diamagnetism Equation -- Quantum Theory of Diamagnetism of Mononuclear Systems -- Paramagnetism -- Quantum Theory of Paramagnetism -- Cooling by Isentropic Demagnetization -- Paramagnetic Susceptibility of Conduction Electrons -- CHAPTER 12: FERROMAGNETISM AND ANTIFERROMAGNETISM. Ferromagnetic Order. magnetic resonance; plasmons, polaritons and polarons; optical processes and excitons; dielectrics and ferroelectrics; surface and interface physics; nanostructures; non crystalline solids; point defects; dislocations; alloys
List(s) this item appears in: Physics
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Books Books UE-Central Library 530.41 K652 (Browse shelf(Opens below)) Available T163

Includes appendices and index

CHAPTER 1: CRYSTAL STRUCTURE. Periodic Array of Atoms --
Fundamental Types of Lattices --
Index System for Crystal Planes --
Simple Crystal Structures --
Direct Imaging of Atomic Structure --
Nonideal Crystal Structures --
Crystal Structure Data --
CHAPTER 2: WAVE DIFFRACTION AND THE RECIPROCAL LATTICE. Diffraction of Waves by Crystals --
Scattered Wave Amplitude --
Brillouin Zones --
Fourier Analysis of the Basis --
CHAPTER 3: CRYSTAL BINDING AND ELASTIC CONSTANTS. Crystals of Inert Gases --
Ionic Crystals --
Covalent Crystals --
Metals --
Hydrogen Bonds --
Atomic Radii --
Analysis of Elastic Strains --
Elastic Compliance and Stiffness Constants --
Elastic Waves in Cubic Crystals --
CHAPTER 4: PHONONS I. CRYSTAL VIBRATIONS. Vibrations of Crystals with Monatomic Basis --
Two Atoms per Primitive Basis --
Quantization of Elastic Waves --
Phonon Momentum --
Inelastic Scattering by Phonons --
CHAPTER 5: PHONONS II. THERMAL PROPERTIES. Phonon Heat Capacity --
Anharmonic Crystal Interactions --
Thermal Conductivity --
CHAPTER 6: FREE ELECTRON FERMI GAS. Energy Levels in One Dimension --
Effect of Temperature on the Fermi-Dirac Distribution --
Free Electron Gas in Three Dimensions --
Heat Capacity of the Electron Gas --
Electrical Conductivity and Ohm's Law --
Motion in Magnetic Fields --
Thermal Conductivity of Metals --
CHAPTER 7: ENERGY BANDS. Nearly Free Electron Model --
Bloch Functions --
Kronig-Penney Model --
Wave Equation of Electron in a Periodic Potential --
Number of Orbitals in a Band --
CHAPTER 8: SEMICONDUCTOR CRYSTALS. Band Gap --
Equations of Motion --
Intrinsic Carrier Concentration --
Impurity Conductivity --
Thermoelectric Effects --
Semimetals --
Superlattices --
CHAPTER 9: FERMI SURFACES AND METALS. Construction of Fermi Surfaces --
Electron Orbits, Hole Orbits, and Open Orbits --
Calculation of Energy Bands --
Experimental Methods in Fermi Surface Studies --
CHAPTER 10: SUPERCONDUCTIVITY. Experimental Survey --
Theoretical Survey --
High-Temperature Superconductors. CHAPTER 11: DIAMAGNETISM AND PARAMAGNETISM. Langevin Diamagnetism Equation --
Quantum Theory of Diamagnetism of Mononuclear Systems --
Paramagnetism --
Quantum Theory of Paramagnetism --
Cooling by Isentropic Demagnetization --
Paramagnetic Susceptibility of Conduction Electrons --
CHAPTER 12: FERROMAGNETISM AND ANTIFERROMAGNETISM. Ferromagnetic Order.
magnetic resonance;
plasmons, polaritons and polarons;
optical processes and excitons;
dielectrics and ferroelectrics;
surface and interface physics;
nanostructures;
non crystalline solids;
point defects;
dislocations;
alloys

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