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Extracting the Dynamic Magnetic Contrast in Time-Resolved X-Ray Transmission Microscopy

机译:在时间分辨X射线透射显微镜中提取动态磁对比度

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摘要

Using a time-resolved detection scheme in scanning transmission X-ray microscopy (STXM), we measured element resolved ferromagnetic resonance (FMR) at microwave frequencies up to 10 GHz and a spatial resolution down to 20 nm at two different synchrotrons. We present different methods to separate the contribution of the background from the dynamic magnetic contrast based on the X-ray magnetic circular dichroism (XMCD) effect. The relative phase between the GHz microwave excitation and the X-ray pulses generated by the synchrotron, as well as the opening angle of the precession at FMR can be quantified. A detailed analysis for homogeneous and inhomogeneous magnetic excitations demonstrates that the dynamic contrast indeed behaves as the usual XMCD effect. The dynamic magnetic contrast in time-resolved STXM has the potential be a powerful tool to study the linear and nonlinear, magnetic excitations in magnetic micro- and nano-structures with unique spatial-temporal resolution in combination with element selectivity.
机译:在扫描透射X射线显微镜(STXM)中使用时间分辨检测方案,我们在两个不同的同步加速器中,在高达10 GHz的微波频率和低至20 nm的空间分辨率下,测量了元素分辨的铁磁共振(FMR)。我们提出了不同的方法,以根据X射线磁性圆二色性(XMCD)效应从动态磁性对比中分离背景的贡献。可以量化GHz微波激励与同步加速器产生的X射线脉冲之间的相对相位,以及进动在FMR处的张角。对均匀和不均匀磁激励的详细分析表明,动态对比度确实表现出通常的XMCD效果。时间分辨STXM中的动态磁对比度有可能成为研究磁性微结构和纳米结构中线性和非线性磁激发的强大工具,具有独特的时空分辨率以及元素选择性。

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