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Electron vortex beams prepared by a spiral aperture with the goal to measure EMCD on ferromagnetic films via STEM

机译:由螺旋孔制备的电子涡旋束,旨在通过STEM测量铁磁膜上的EMCD

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X-ray magnetic circular dichroism is a well established method to study element specific magnetic properties of a material, while electron magnetic circular dichroism (EMCD), which is the electron wave analogue to XMCD, is scarcely used today. Recently discovered electron vortex beams, that carry a discrete orbital angular momentum (OAM) L, are also predicted to reveal dichroic signals. Since electron beams can be easily focused down to sub-nanometer diameters, this novel technique promises the possibility to quantitatively determine local magnetic properties with unrivalled lateral resolution. As the spiralling wave front of the electron vortex beam has an azimutally growing phase shift of up to 2 pi and a phase singularity in its axial center, specially designed apertures are needed to generate such non-planar electron waves. We report on the preparation and successful implementation of spiral apertures into the condenser lens system of an aberration-corrected FEL Titan(3) 80-300 transmission electron microscope (TEM). This setup allows to perform scanning TEM (STEM) with vortex beams carrying user-selected OAM. First experiments on the interaction of the vortex beam with a poly-crystalline sample are presented. Within the achieved signal to noise ratio no EMCD signal has been detected. This finding is supported by simulations of inelastic scattering of a beam generated by spiral aperture. (C) 2014 Published by Elsevier B.V.
机译:X射线磁性圆二色性是研究材料的特定元素磁性的成熟方法,而如今几乎不使用与XMCD类似的电子波圆二色性(EMCD)。还预测了最近发现的携带离散轨道角动量(OAM)L的电子涡旋光束会显示二向色性信号。由于电子束可以很容易地聚焦到亚纳米直径,因此这项新技术有望以无与伦比的横向分辨率定量确定局部磁性能。由于电子涡旋束的螺旋波前具有高达2 pi的方位角增长的相移以及其轴向中心的相位奇异性,因此需要专门设计的孔来生成此类非平面电子波。我们报告的成象校正的FEL Titan(3)80-300透射电子显微镜(TEM)的聚光透镜系统中螺旋孔的制备和成功实施。此设置允许使用携带用户选择的OAM的涡旋光束执行扫描TEM(STEM)。提出了涡流束与多晶样品相互作用的第一个实验。在达到的信噪比范围内,未检测到EMCD信号。螺旋孔径产生的光束的非弹性散射的仿真支持了这一发现。 (C)2014由Elsevier B.V.发布

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