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1. Mathematical Introduction
2. Acoustic Phonons
3. Plasmons, Optical Phonons and Polarization Waves
4. Magnons
5. Fermion Fields and the Hartree-Fock Approximation
6. Many-Body Techniques and the Electron Gas
7. Polarons and the Electron Phonon Interaction
8. Superconductivity
9. Bloch Functions-General Properties
10. Brillouin Zones and Crystal Symmetry
11. Dynamics of Electrons in a Magnetic Field:de Haas-van Alphen Effect and Cyclotron Resonance
12. Magnetoresistance
13. Calculatio of Energy Bonds and Fermi Surfaces
14. Semiconductor Crystals I. Energy Bands, Cyclotron Resonance and Impurity States
15. Semiconductor Crystals II: Optical Absorption and Excitons
16. Electrodynamics of Metals
17. Acoustic Attenuation in Metals
18. Theory of Alloys
19. Correlation Functions and Neutron Diffraction by Crystal
20. Recoilless Emission
21. Green's Functions-Application to Solid State Physics
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Quantum Theory of Solids is a modern presentation of theoretical solid state physics. It builds directly on the same author's introduction to solid state physics and is planned as a one year graduate course for experimental and theortical physicists. It is well-suited for self study because the text contains 110 problems. The first part of the book treats phonon, electron and magnon fields, culminating in the BCS theory of superconductivity. The second part considers Fermi surfaces and electron wave functions, and develops the group theortical description of Brillouin zones. The third part applied correlation functions to time-dependent effects in solids, with an introduction to Green's functions.
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