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NUCLEAR BRAGG SCATTERING
CORRELATION FUNCTIONS IN NUCLEAR SCATTERING
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antiferromagnet approximation assume atom average band beam becomes Bragg calculate cell Chapter coefficient coherent condition consider constant contains contribution correlation function corresponding critical cross-section crystal cubic defined dependence derived described detailed determined direction discussion effects elastic elastic scattering electrons energy equation evaluate example expression ferromagnet field follows form factor give given Hamiltonian Hence identical incident incoherent integral interaction involved ions lattice limit linear magnetic magnetic scattering matrix mean measured modes molecule motion neutron nuclear nuclei observed obtain operators orbital orientation particle peak phonon Phys polarization position potential properties purely quantum mechanical reduces relation result satisfy shown side simple single spin-wave structure symmetry temperature theory thermal tion transform unit vector wave function write zero