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Field-dependent magnetic domain structure in antiferromagnetically coupled multilayers by polarized neutron scattering

机译:极化中子散射在反铁磁耦合多层中的场相关磁畴结构

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摘要

We study the magnetic structure of antiferromagnetically (AF) coupled Co/Cu multilayers (MLs) with 10 or 40 bilayers under the influence of an external field by polarized neutron scattering in specular and off-specular geometry. We observe in the spin-flip channels off-specular intensities around the 1/2-order Bragg position. Based on simulations of the measured data within the distorted-wave Born approximation we find vertically correlated domains, and their domain size evolves for a sufficiently large number of bilayers along the ML stack. Small domains most likely at the top and large domains presumably at the bottom coexist within a single ML. The small domains gradually get aligned with the applied field direction around 0.5 kOe, whereas the bigger domains remain AF coupled up to 3.0 kOe, which is well above the apparent saturation field measured by conventional magnetometry methods. Moreover, we observe a double-peak structure at the 1/2-order position for the MLs with ten as well as 40 bilayers.
机译:我们通过在镜面和镜面外几何中的极化中子散射,在外场影响下研究了具有10或40个双层的反铁磁(AF)耦合Co / Cu多层(ML)的磁性结构。我们在自旋翻转通道中观察到1/2级布拉格位置附近的镜面反射强度。基于失真波Born近似内的测量数据的模拟,我们发现垂直相关的畴,并且沿着ML堆栈,对于足够大量的双层,它们的畴大小会不断变化。在单个ML中,最可能在顶部的小域和可能在底部的大域共存。小磁畴逐渐在0.5 kOe附近与施加的磁场方向对齐,而较大磁畴在高达3.0 kOe的情况下仍保持AF耦合,这远高于通过常规磁力法测量的视在饱和磁场。此外,对于具有十个以及四十个双层的ML,我们在1/2阶位置观察到一个双峰结构。

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