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Spin-wave susceptibility of partially randomized ferromagnetic superlattices

机译:部分随机铁磁超晶格的自旋波磁化率

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This paper is a theoretical investigation of the effect of inhomogeneities in the period of a ferromagnetic superlattice on the high-frequency superlattice susceptibility. The calculations are done for a model in which the uniaxial magnetic anisotropy is taken as the physical parameter that characterizes both the ideal superlattice and a partially randomized superlattice. It is found that as the inhomogeneities become more intense, the two resonance peaks corresponding to the splitting to the spectrum at the edge of the Brillouin zone of the superlattice broaden, move closer to each other, and finally merge into one. The height of this peak increases and the peak width decreases as the intensity of the inhomogeneities increases further. The effect of inhomogeneities on the susceptibility differs dramatically in the two limits of short- and long-wave inhomogeneities: in the latter case (in contrast to the former) the dependence of the separation of the susceptibility peaks on the intensity and correlation properties of the inhomogeneities is nonmonotonic. The possibility of observing these effects in spin-wave resonance experiments involving multilayer magnetic films is also discussed.
机译:本文是铁磁超晶格周期不均匀性对高频超晶格磁化率影响的理论研究。对于将单轴磁各向异性作为表征理想超晶格和部分随机超晶格的物理参数的模型进行了计算。发现随着不均匀性的加剧,与超晶格的布里渊区的边缘处的光谱分裂相对应的两个共振峰变宽,彼此靠近并最终融合为一个。随着不均匀性的强度进一步增加,该峰的高度增加而峰的宽度减小。在短波和长波不均匀性的两个极限中,不均匀性对磁化率的影响差异显着:在后一种情况下(与前一种情况相反),磁化率峰的分离对光强度和相关特性的依赖性不均匀性是非单调的。还讨论了在涉及多层磁性膜的自旋波共振实验中观察这些效应的可能性。

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