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Simple Physical Theory of Spin Wave Interactions F Keffer and R Loudon
Neutron Diffraction by Helical Spin Structures W C Koehler
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alloys Alnico amplitude angle anisotropy energy annealing antiferromagnetic Appl applied field approximately atoms behavior calculated cobalt coercive force component composition constant core coupling crystalline crystallite cubic Curie temperature curves decrease density diffraction direction domain wall dysprosium easy axis effect electron elongated equation exchange interaction experimental ferrite ferromagnetic resonance flux function gauss hysteresis loop increase indicate ions iron-cobalt Laboratory lattice linewidth magnetic field magnetic properties magnetostatic magnitude material maximum measurements metal microwave modes Neel neutron diffraction nickel normal observed obtained orientation oxide parallel paramagnetic parameters particles peak Permalloy Permalloy films perpendicular phase Phvs Phys plane pulse pump range rare-earth ratio region relaxation remanence room temperature rotation sample saturation magnetization shown in Fig shows single crystal specimens spin waves spinel structure sublattice substrate switching temperature dependence theoretical theory threshold tion torque transition uniaxial yttrium iron garnet zero