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Quantitative analysis of magnetic spin and orbital moments from an oxidized iron (1 1 0) surface using electron magnetic circular dichroism

机译:使用电磁圆二色性定量分析氧化铁(1 1 0)表面的磁自旋和轨道矩

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摘要

Understanding the ramifications of reduced crystalline symmetry on magnetic behavior is a critical step in improving our understanding of nanoscale and interfacial magnetism. However, investigations of such effects are often controversial largely due to the challenges inherent in directly correlating nanoscale stoichiometry and structure to magnetic behavior. Here, we describe how to use Transmission Electron Microscope (TEM) to obtain Electron Magnetic Circular Dichroism (EMCD) signals as a function of scattering angle to locally probe the magnetic behavior of thin oxide layers grown on an Fe (1 1 0) surface. Experiments and simulations both reveal a strong dependence of the magnetic orbital to spin ratio on its scattering vector in reciprocal space. We exploit this variation to extract the magnetic properties of the oxide cladding layer, showing that it locally may exhibit an enhanced orbital to spin moment ratio. This finding is supported here by both spatially and angularly resolved EMCD measurements, opening up the way for compelling investigations into how magnetic properties are affected by nanoscale features.
机译:了解降低的晶体对称性对磁行为的影响是增进我们对纳米级和界面磁的理解的关键步骤。然而,由于将纳米级化学计量和结构与磁行为直接相关联所固有的挑战,因此对此类效应的研究常常引起争议。在这里,我们描述了如何使用透射电子显微镜(TEM)来获取电子电磁圆二色性(EMCD)信号作为散射角的函数,以局部探测在Fe(1 1 0)表面上生长的薄氧化物层的磁行为。实验和模拟都揭示了在互易空间中磁轨道自旋比对其散射矢量的强烈依赖性。我们利用这种变化来提取氧化物包覆层的磁性能,表明其局部可能表现出增强的轨道与自旋矩比。在这里,空间和角度解析的EMCD测量均支持此发现,这为进行令人信服的研究纳米特性如何影响磁性能的方法开辟了道路。

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