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Brillouin Light Scattering Determination of the Spin-Wave Stiffness Parameter in Lithium-Zinc Ferrite

机译:布里渊光散射法测定锂锌铁氧体中的自旋波刚度参数

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The spin-wave stiffness parameter for Zn substituted Lithium ferrite has been measured by the technique of Brillouin light scattering. A range of compositions from pure Li-ferrite through Lithium Zinc ferrite with 0.65 Zn atomic/formula unit was studied. The magnon frequency vs. field determinations from light scattering and separate magnetization data were used to determine the spin wave stiffness parameter, D. The data give a D value of 10.1 x 10 to the -9th power Oe sq cm for pure lithium ferrite, approximately twice as large as for yttrium iron garnet. A rapid decrease occurs with Zn substitution and D is essentially zero for about 0.4 Zn at./formula unit. These are the first reported results of Brillouin scattering from a polycrystalline ferrite. A molecular field calculation of the spin-wave stiffness yields a much slower decrease in D with zinc than is found experimentally. (Reprints)

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