Theoretical Solid State Physics, Part 2 |
Contents
Transport | 681 |
Relaxation time approximation | 693 |
e Umklapp processes | 717 |
Copyright | |
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alloy Appendix approximation atom band Bloch Boltzmann equation C₁ C₂ calculate Chapter character table coefficient collision conductivity constant contribution Cooper pair Coulomb crystal defect defined density matrix dielectric discussed displaced effective mass eik.R electric field electron-phonon energy equilibrium excited exciton Fermi energy Fermi level Fermi surface free electron frequency given Green function H₁ Hamiltonian Hence impurity integral interaction irreducible representations k₁ lattice m₁ magnetic field matrix element metal modes momentum normal obtain operator optical orbit oscillations P₁ particles perturbation phonon Phys point group polarization polaron potential problem R₁ R₂ relation resonance result right-hand side rotation scattering semi-conductors shown in Figure single-particle solution spectrum spin waves superconducting symmetry temperature theory thermal transform transition umklapp vector velocity wave function write zero