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Demonstration of k-vector selective microscopy for nanoscale mapping of higher order spin wave modes

机译:演示k向量选择显微镜纳米级高阶自旋波模式的映射

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摘要

As a potential route towards beyond CMOS computing magnonic waveguides show outstanding properties regarding fundamental wave physics and data transmission. Here, we use time resolved scanning transmission X-ray microscopy to directly observe spin waves in magnonic permalloy waveguides with nanoscale resolution. Additionally, we demonstrate an approach for k-vector selective imaging to deconvolute overlapping modes in real space measurements. Thereby, we observe efficient excitation of symmetric and antisymmetric modes. The profiles of higher order modes that arise from sub-micron confinement are precisely mapped out and compared to analytical models. Thus, we lay a basis for the design of multimode spin wave transmission systems and demonstrate a general technique for k-specific microscopy that can also be used beyond the field of magnonics.
机译:作为一个潜在的路线对CMOS计算之外magnonic波导展示优秀的属性关于基波物理和数据传播。透射x射线显微镜直接观察旋转波magnonic坡莫合金波导纳米级分辨率。证明k向量选择性的方法在实际成像deconvolute重叠模式空间测量。激励的对称和反对称模式。高阶模式的概要文件从亚微米监禁正是映射和比较分析模型。多模自旋波的设计打下基础传动系统和演示一般技术k-specific显微镜也可以magnonics以外的领域。

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