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Study of the in-plane magnetic structure of a layered system using polarized neutron scattering under grazing incidence geometry

机译:掠入射几何条件下利用极化中子散射的分层系统面内磁结构研究

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摘要

The in-plane magnetic structure of a layered system with a polycrystalline grain size less than the ferromagnetic exchange length was investigated using polarized neutron off-specular scattering and grazing incidence small angle scattering measurements to gain insight into the mechanism that controls the magnetic properties which are different from the bulk. These complementary measurements with different length scales and the data analysis based on the distorted wave Born approximation revealed the lateral correlation on a length scale of sub- μm due to the fluctuating orientation of the magnetization in the layer. The obtained in-plane magnetic structure is consistent with the random anisotropy model, i.e. competition between the exchange interactions between neighboring spins and the local magnetocrystalline anisotropy.
机译:使用极化中子非镜面散射和掠入射小角度散射测量研究了多晶粒度小于铁磁交换长度的层状系统的面内磁结构,以深入了解控制磁特性的机理。与散装不同。这些具有不同长度尺度的补充测量以及基于失真波博恩近似的数据分析显示,由于层中磁化强度的波动,在亚微米长度尺度上存在横向相关性。所获得的面内磁结构与随机各向异性模型一致,即,相邻自旋之间的交换相互作用与局部磁晶各向异性之间的竞争。

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