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Atom counting in HAADF STEM using a statistical model-based approach: Methodology, possibilities, and inherent limitations

机译:使用基于统计模型的方法在HAADF STEM中进行原子计数:方法,可能性和固有局限性

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摘要

In the present paper, a statistical model-based method to count the number of atoms of monotype crystalline nanostructures from high resolution high-angle annular dark-field (HAADF) scanning transmission electron microscopy (STEM) images is discussed in detail together with a thorough study on the possibilities and inherent limitations. In order to count the number of atoms, it is assumed that the total scattered intensity scales with the number of atoms per atom column. These intensities are quantitatively determined using model-based statistical parameter estimation theory. The distribution describing the probability that intensity values are generated by atomic columns containing a specific number of atoms is inferred on the basis of the experimental scattered intensities. Finally, the number of atoms per atom column is quantified using this estimated probability distribution. The number of atom columns available in the observed STEM image, the number of components in the estimated probability distribution, the width of the components of the probability distribution, and the typical shape of a criterion to assess the number of components in the probability distribution directly affect the accuracy and precision with which the number of atoms in a particular atom column can be estimated. It is shown that single atom sensitivity is feasible taking the latter aspects into consideration.
机译:在本文中,将详细讨论基于统计模型的高分辨率高分辨率高角度环形暗场(HAADF)扫描透射电子显微镜(STEM)图像中单型晶体纳米结构的原子数的方法。研究可能性和固有局限性。为了计算原子数,假定总散射强度与每个原子列的原子数成比例。这些强度是使用基于模型的统计参数估计理论定量确定的。根据实验的散射强度推断出描述强度值由包含特定原子数的原子列生成的概率的分布。最后,使用此估计的概率分布来量化每个原子列的原子数。观察到的STEM图像中可用的原子列数,估计的概率分布中的分量数,概率分布的分量宽度以及直接评估概率分布中的分量数的标准的典型形状影响估计特定原子列中原子数的准确性和精确度。结果表明,考虑到后面的方面,单原子灵敏度是可行的。

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