
Solid State Physics
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Content
- Front Cover
- Solid State Physics, Volume 4
- Copyright Page
- Contents
- Contributors to Volume 4
- Preface
- Contents of Volumes 1, 2, and 3
- Articles Planned for Future Volumes
- Chapter 1. Ferroelectrics and Antiferroelectrics
- I. Introduction
- II. The Phenomenological Behavior of Ferroelectrics: Experimental
- III. Thermodynamic Theory of Ferroelectric Crystals
- IV. Optical Properties of Ferroelectrics in the Visible Range
- V. Domain Structure and Hysteresis
- VI. Thermodynamic Behavior of Antiferroelectrics: Experimental
- VII. Thermodynamic Theory of Antiferroelectrics
- VIII. Some Optical Properties of Antiferroelectrics
- IX. Antiferroelectric Domains
- X. The Static and Dynamic Structure of Ferroelectric and Antiferroelectric Crystals
- XI. Isotope Effects
- XII. Ferroelectricity and Antiferroelectricity of Solid Solutions
- XIII. Molecular Models
- Chapter 2. Theory of Mobility of Electrons in Solids
- I. Introduction
- II. Statistics of Free Electrons
- III. Boltzmann Equation
- IV. Solution of the Boltzmann Equation for Nonspherical Energy Surfaces and Anisotropic Relaxation Times
- V. Scattering Mechanisms
- VI. Effects Arising from Lack of Thermal Equilibrium
- Chapter 3. The Orthogonalized Plane-Wave Method
- I. Description of the Method
- II. Survey of Some Applications of the Method
- III. Example: The Method Applied to Silicon Crystal
- Chapter 4. Bibliography of Atomic Wave Functions
- I. Introduction
- II. Alphabetical List of Atoms and Ions
- Chapter 5. Techniques of Zone Melting and Crystal Growing
- I. Introduction
- II. The Distribution Coefficient and Normal Freezing
- III. Principles of Zone Refining
- IV. Practice of Zone Refining
- V. Zone Leveling
- VI. Methods of Perturbing the Concentration
- VII. Temperature-Gradient Zone Melting
- VIII. Crystal Growth and Dislocations
- Author Index
- Subject Index
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