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THE MAGNETIC HAMILTONIAN
THE MAGNETIC PROPERTIES OF ONE ELECTRON ATOMS
THE MAGNETIC PROPERTIES OF MANYELECTRON
9 other sections not shown
absorption acoustic angular momentum approximation assume atom band edge calculation cation coefficients commute components conduction band conduction electrons configuration consider contribution coordinates Coulomb coupling crystal field cubic cyclotron resonance degeneracy degenerate density dependence diagonal diamagnetic dipole discussed in Section donor effective mass eigenstates electric field electron spin energy levels energy surfaces evaluated exchange interaction exciton Fermi surface frequency g-factor given by eqn ground Hamiltonian Hartree-Fock hydrogenic hyperfine interaction impurity integral interaction terms interband inversion symmetry irreducible representations Jahn-Teller Kramers lattice Lett ligand magnetic field many-electron matrix elements metals neglecting nuclear nucleus observed obtained one-electron operator orbital paramagnetic perturbation theory phonon Phys polaron potential problem quantum number result solid spherical spin Hamiltonian spin resonance spin-orbit interaction splitting susceptibility temperature tensor term in eqn tion transitions unit volume valence band vanish vector wave functions Wigner-Eckart theorem written Zeeman interaction