Solid State Physics
Holt, Rinehart and Winston, 1976 - Solid-state physics - 826 pages
The Drude Theory of Metals. The Sommerfeld Theory of Metals. Failures of the Free Electron Model. Crystal Lattices. The Reciprocal Lattice. Determination of Crystal Structures by X-Ray Diffraction. Classification of Bravais Lattices and Crystal Structures. Electron levels in a Periodic Potential: General Properties. Electrons in a Weak Periodic Potential.THe Tight-Binding Method. Other Methods for Calculating Band Structure. The Semiclassical Model of Electron Dynamics. The Semiclassical Theory of Conduction in Metals. Measuring the Fermi Surface. Band Structure of Selected Metals. Beyond the Relaxation. Time Approximation. Beyond the Independent Electron Approximation. Surface Effects. Classification of Solids. Cohesive Energy. Failures of the Static Lattice Model. Classical Theory of the Harmonic Crystal. Quantum Theory of the Harmonic Crystal. Measuring Phonon Dispersion Relations. Anharmonic Effects in Crystals. Phonons in Metals. Dielectric Properties of Insulators. Homogeneous Semiconductors. Inhomogeneous Semiconductors. Defects in Crystals. Diamagnetism and Paramagnetism. Electron Interactions and Magnetic Structure. Magnetic Ordering. Superconductivity. Appendices.
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The Drude Theory of Metals
Failures of the Free Electron Model
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additional applied approximation assume atomic band Bragg Bravais lattice calculation carrier Chapter charge close collision compared condition conduction consider constant containing contribution correction crystal cubic density dependence described determined direction discussion distance distribution effect elements energy equation equilibrium example fact factor Fermi surface field Figure follows free electron frequency function give given hexagonal holes important impurity independent integral interaction ionic ions known lattice vector leading levels limit linear magnetic field mean measured metals mode momentum normal Note observed orbits periodic phonon plane positive possible potential present primitive cell Problem properties reciprocal lattice reflection region relation requires result satisfy scattering Show simple single solid solution space specific heat structure surface symmetry Table temperature term theory thermal unit vanishes volume wave functions wave vector zero zone