Introduction to solid state physics

By: Kittel,CharlesMaterial type: TextTextPublication details: New York : Wiley, ©1996Edition: 7th edDescription: xi, 673 pages : illustrationsISBN: 9780471111818 ; 0471111813 ; 9789971511807; 9971511800 Subject(s): Solid state physicsDDC classification: 530.41
Contents:
1. Crystal Structure -- 2. Reciprocal Lattice -- 3. Crystal Binding and Elastic Constants -- 4. Phonons I. Crystal Vibrations -- 5. Phonons II. Thermal Properties -- 6. Free Electron Fermi Gas -- 7. Energy Bands -- 8. Semiconductor Crystals -- 9. Fermi Surfaces and Metals -- 10. Plasmons, Polaritons, and Polarons -- 11. Optical Processes and Excitons -- 12. Superconductivity -- 13. Dielectrics and Ferroelectrics -- 14. Diamagnetism and Paramagnetism -- 15. Ferromagnetism and Antiferromagnetism -- 16. Magnetic Resonance -- 17. Noncrystalline Solids -- 18. Point Defects -- 19. Surface and Interface Physics -- 20. Dislocations -- 21. Alloys -- App. A Temperature Dependence of the Reflection Lines -- App. B Ewald Calculation of Lattice Sums -- App. C Quantization of Elastic Waves: Phonons -- App. D Fermi-Dirac Distribution Function -- App. E Derivation of dk/dt Equation -- App. F Boltzmann Transport Equation -- App. G Vector Potential, Field Momentum, and Gauge Transformations. App. H Cooper Pairs -- App. I Ginsburg-Landau Equation -- App. J Electron-Phonon Collisions.
Summary: This edition relates significant advances in the field, presenting detailed explanations of nanostructures, superlattices, Block-Wannier levels, Zener tunnelling, light-emitting diodes, fibre optics, high temperature superconductors, microscopy and new magnetic materials
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Includes Index

1. Crystal Structure --
2. Reciprocal Lattice --
3. Crystal Binding and Elastic Constants --
4. Phonons I. Crystal Vibrations --
5. Phonons II. Thermal Properties --
6. Free Electron Fermi Gas --
7. Energy Bands --
8. Semiconductor Crystals --
9. Fermi Surfaces and Metals --
10. Plasmons, Polaritons, and Polarons --
11. Optical Processes and Excitons --
12. Superconductivity --
13. Dielectrics and Ferroelectrics --
14. Diamagnetism and Paramagnetism --
15. Ferromagnetism and Antiferromagnetism --
16. Magnetic Resonance --
17. Noncrystalline Solids --
18. Point Defects --
19. Surface and Interface Physics --
20. Dislocations --
21. Alloys --
App. A Temperature Dependence of the Reflection Lines --
App. B Ewald Calculation of Lattice Sums --
App. C Quantization of Elastic Waves: Phonons --
App. D Fermi-Dirac Distribution Function --
App. E Derivation of dk/dt Equation --
App. F Boltzmann Transport Equation --
App. G Vector Potential, Field Momentum, and Gauge Transformations. App. H Cooper Pairs --
App. I Ginsburg-Landau Equation --
App. J Electron-Phonon Collisions.

This edition relates significant advances in the field, presenting detailed explanations of nanostructures, superlattices, Block-Wannier levels, Zener tunnelling, light-emitting diodes, fibre optics, high temperature superconductors, microscopy and new magnetic materials

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