论文标题
在通道条件下快速生成计算的ADF-EDX散射横截面
Fast generation of calculated ADF-EDX scattering cross-sections under channelling conditions
论文作者
论文摘要
高级材料通常由多个以复杂结构排列的元素组成。定量扫描透射电子显微镜可用于确定原子量表的纳米结构的组成和厚度。但是,通过将所得的原子分辨率图像和光谱数据与多层模拟进行比较,需要考虑动态散射需要考虑到需要考虑的动态散射来量化混合色谱柱。这些模拟的计算强度性质与给定组合物的大量混合色谱柱配置的组合确实严重妨碍了定量过程。为了克服这些挑战,我们在这里报告了一种不连贯的非线性方法的开发,用于在通道条件下快速预测混合柱的ADF-EDX散射横截面。我们首先解释了散射物理学的ADF和EDX不一致的起源,表明在高角度ADF检测器的情况下,这两个信号之间存在线性依赖性。以EDX为完美的不连贯参考模式,我们使用多层模拟在不同的显微镜条件下定量检查ADF纵向不一致。基于不连贯的成像,以前为ADF开发的原子透镜模型现在扩展到EDX,它与良好一致的ADF-EDX散射横截面预测与多层型核心纳米粒子中的混合柱和高熵合金的混合柱相吻合。对ADF-EDX散射横截面的快速准确预测为探索具有多个元素的异质材料的广泛订购可能性提供了新的机会。
Advanced materials often consist of multiple elements which are arranged in a complicated structure. Quantitative scanning transmission electron microscopy is useful to determine the composition and thickness of nanostructures at the atomic scale. However, significant difficulties remain to quantify mixed columns by comparing the resulting atomic resolution images and spectroscopy data with multislice simulations where dynamic scattering needs to be taken into account. The combination of the computationally intensive nature of these simulations and the enormous amount of possible mixed column configurations for a given composition indeed severely hamper the quantification process. To overcome these challenges, we here report the development of an incoherent non-linear method for the fast prediction of ADF-EDX scattering cross-sections of mixed columns under channelling conditions. We first explain the origin of the ADF and EDX incoherence from scattering physics suggesting a linear dependence between those two signals in the case of a high-angle ADF detector. Taking EDX as a perfect incoherent reference mode, we quantitatively examine the ADF longitudinal incoherence under different microscope conditions using multislice simulations. Based on incoherent imaging, the atomic lensing model previously developed for ADF is now expanded to EDX, which yields ADF-EDX scattering cross-section predictions in good agreement with multislice simulations for mixed columns in a core-shell nanoparticle and a high entropy alloy. The fast and accurate prediction of ADF-EDX scattering cross-sections opens up new opportunities to explore the wide range of ordering possibilities of heterogeneous materials with multiple elements.