论文标题
部分可观测时空混沌系统的无模型预测
Single scan STEM-EMCD in 3-beam orientation using a quadruple aperture
论文作者
论文摘要
获得多个角度分辨的电子损耗光谱(EEL)的需求是与电子磁循环二色性(EMCD)实验相关的几个关键挑战之一。如果通过在样品的特定区域扫描纳米尺寸的电子探头来进行实验,则从此类数据中提取的局部磁信息的精度高度取决于多个扫描之间空间注册的准确性。对于3束方向的EMCD实验,这意味着必须对相同的样品区域进行四次扫描,同时保持所有实验条件相同。这是一项非平凡的任务,因为形态学和化学修饰的可能性很大,并且由于梁损伤,污染和空间漂移而导致不同扫描之间的晶体的非系统性局部取向变化。在这项工作中,我们采用定制的四倍孔径来获取单个电子束扫描中EMCD分析所需的四个鳗鱼光谱,从而消除了上述复杂性。我们证明了与亚NM探针大小相对应的梁收敛角的定量EMCD结果,并比较了不同检测器几何形状的EMCD结果。
The need to acquire multiple angle-resolved electron energy loss spectra (EELS) is one of the several critical challenges associated with electron magnetic circular dichroism (EMCD) experiments. If the experiments are performed by scanning a nanometer to atomic-sized electron probe on a specific region of a sample, the precision of the local magnetic information extracted from such data highly depends on the accuracy of the spatial registration between multiple scans. For an EMCD experiment in a 3-beam orientation, this means that the same specimen area must be scanned four times while keeping all the experimental conditions same. This is a non-trivial task as there is a high chance of morphological and chemical modification as well as non-systematic local orientation variations of the crystal between the different scans due to beam damage, contamination and spatial drift. In this work, we employ a custom-made quadruple aperture to acquire the four EELS spectra needed for the EMCD analysis in a single electron beam scan, thus removing the above-mentioned complexities. We demonstrate a quantitative EMCD result for a beam convergence angle corresponding to sub-nm probe size and compare the EMCD results for different detector geometries.