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Soft X-ray magnetic scattering studies of 3D magnetic morphology along buried interfaces in NiFe/CoPd/NiFe nanostructures

机译:NiFe / CoPd / NiFe纳米结构中沿掩埋界面的3D磁形态的软X射线磁散射研究

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摘要

With the continuing interest in new magnetic materials for sensor devices and data storage applications, the community needs reliable and sensitive tools for the characterization of such materials. Soft X-rays tuned to elemental absorption edges are a depth and element sensitive probe of magnetic structure at the nanoscale, and scattering measurements have the potential to provide 3D magnetic structural information of the material. In this work we develop a methodology in transmission geometry that allows one to probe the spatial distribution of the magnetization along the different layers of magnetic heterostructures. We study the in-plane/out-of-plane transition of magnetic domains in multilayer thin film systems consisting of two layers of NiFe top and bottom, and a 50 repeat Co/Pd multilayer in the centre. The experimental data are analysed by simulating scattering data starting from micromagnetic simulations, and we find that the out of plane domains of the Co/Pd multilayer intrude into the NiFe layers to a greater extent than would be expected from micromagnetic simulations performed using the standard magnetically isotropic input parameters for the NiFe layers.
机译:随着对用于传感器设备和数据存储应用的新型磁性材料的持续关注,社区需要可靠且灵敏的工具来表征此类材料。调谐到元素吸收边缘的软X射线是纳米级磁性结构的深度和元素敏感探针,散射测量具有提供材料3D磁性结构信息的潜力。在这项工作中,我们开发了一种传输几何学的方法,可以研究沿着磁异质结构不同层的磁化强度的空间分布。我们研究了多层薄膜系统中磁畴的平面内/平面外过渡,该薄膜系统由上下两层NiFe组成,中间有50个重复的Co / Pd多层。通过模拟从微磁模拟开始的散射数据来分析实验数据,并且我们发现Co / Pd多层的平面外区域侵入NiFe层的程度比使用标准磁进行的微磁模拟预期的程度更大。 NiFe层的各向同性输入参数。

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