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Polarized photons and quantum theory
Momentum transfer to bound systems and the Mossbauer
14 other sections not shown
absorption amplitude angular momentum annihilation operators approximation atom boson calculation classical coefficients components conservation consider coordinate corresponding creation operators crystal decay defined degrees of freedom density depends described deuteron diagonal diagrams Dirac eigenfunctions eigenstates eigenvalues eigenvectors electron emission emitted equations of motion excitation expectation value expression factor Fermi fermion field theory finite Fourier G-spin gamma ray gives ground Hamiltonian harmonic oscillator Hartree-Fock helicity Hermitean incident beam initial integral interaction invariant isospin kaon large number lattice linear combination Lorentz transformations mass matrix elements measurement momenta Mossbauer effect multiplets nicol non-relativistic normal nuclear nucleons nucleus number of particles obtained pairs parity perturbation theory photon physical pions plane wave plane-wave polarized quantum mechanics quantum numbers relativistic resonance result rotation scattering Schrodinger equation second-quantized notation single-particle solution space inversion spectrum spin symmetry thermal time-dependent transition treatment two-body unperturbed vacuum variables wave function zero