crystal bin and structure 1.1 classification of solids by bin forces (b) 1.1.1 molecular crystals and the van der waals forces (b) 1.1.2 ionic crystals and born-mayer theory (b) 1.1.3 metals and wigner-seitz theory (b) 1.1.4 valence crystals and heitler-london theory (b) 1.1.5 ment on hydrogen-bonded crystals (b) 1.2 group theory and crystallography 1.2.1 definition and simple properties of grou (ab) 1.2.2 examples of solid-state symmetry properties (b) 1.2.3 theorem: no five-fold symmetry (b) 1.2.4 some crystal structure terms and nonderived facts (b) 1.2.5 list of crystal systems and bravais lattices (b) 1.2.6 schoenflies and international notation for point grou (a) 1.2.7 some typical crystal structures (b) 1.2.8 miller indices (b) 1.2.9 bragg and yon lane diffraction (ab) problems
2 lattice vibrations and thermal properties 2.1 the born-oppenheimer appromation (a) 2.2 one-dimensional lattices (b) 2.2.1 classical two-atom lattice with periodic boundary conditions (b) 2.2.2 classical, large, perfect monatomic lattice,and introduction to brillouin zones (b) 2.2.3 specific heat of linear lattice (b) 2.2.4 classical diatomic lattices: optic and acoustic modes (b) 2.2.5 classical lattice with defects (b) 2.2.6 quantum-mechanical linear lattice (b) 2.3 three-dimensional lattices 2.3.1 direct and reciprocal lattices and pertinent relations (b) 2.3.2 quantum-mechanical treatment and classical calculation of the dispersion relation (b) 2.3.3 the debye theory of specific heat (b) 2.3.4 anharmonic terms in the potential /the gruneisen parameter (a) 2.3.5 wave propagation in an elastic crystalline continuum(met, ms) problems
3 electrons in periodic potentials 3.1 reduction to one-electron problem 3.1.1 the variational principle (b) 3.1.2 the hartree appromation (b) 3.1.3 the hartree――fock appromation (a) 3.1.4 coulomb correlations and the many-electron problem (a) 3.1.5 density functional appromation (a) 3.2 one-electron models 3.2.1 the kronig-penney model (b) 3.2.2 the free-electron or quasifree-eiectron appromation (b) 3.2.3 the problem of one electron in a three-dimensional periodic potential 3.2.4 effect of lattice defects on electronic states in crystals (a) problems
4 the interaction of electrons and lattice vibrations 4.1 particles and interactions of solid-state physics (b) 4.2 the phonon-phonon interaction (b) 4.2.1 anharmonic terms in the hamiltonian (b) 4.2.2 normal and umklapp processes (b) 4.2.3 ment on thermal conductivity (b) 4.3 the electron-phonon interaction 4.3.1 form of the hamiltonian (b) 4.3.2 rigid-ion appromation (b) 4.3.3 the polaron as a prototype quasiparticle (a) 4.4 brief ments on electron-electron interactions (b) …… 5 metals,alloys,and the fermi surface 6 semiconductors 7 magism,magnons,and magic resonance 8 superconductivity 9 optical properties of solids 11 defects in solids 12 current topics in solid condensed-matter physics appendices bibliography index
以下为对购买帮助不大的评价