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High precision measurements of atom column positions using model-based exit wave reconstruction

机译:使用基于模型的出射波重构对原子列位置进行高精度测量

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In this paper, it has been investigated how to measure atom column positions as accurately and precisely as possible using a focal series of images. In theory, it is expected that the precision would considerably improve using a maximum likelihood estimator based on the full series of focal images. As such, the theoretical lower bound on the variances of the unknown atom column positions can be attained. However, this approach is numerically demanding. Therefore, maximum likelihood estimation has been compared with the results obtained by fitting a model to a reconstructed exit wave rather than to the full series of focal images. Hence, a real space model-based exit wave reconstruction technique based on the channelling theory is introduced. Simulations show that the reconstructed complex exit wave contains the same amount of information concerning the atom column positions as the full series of focal images. Only for thin samples, which act as weak phase objects, this information can be retrieved from the phase of the reconstructed complex exit wave.
机译:在本文中,已经研究了如何使用一系列焦点图像尽可能精确地测量原子列位置。从理论上讲,使用基于整个系列聚焦图像的最大似然估计器,可望大大提高精度。这样,可以获得未知原子列位置的方差的理论下限。但是,这种方法在数字上要求很高。因此,已经将最大似然估计与通过将模型拟合到重构出射波而不是整个聚焦图像序列所获得的结果进行了比较。因此,介绍了一种基于信道理论的基于真实空间模型的出射波重构技术。仿真表明,重构后的复杂出射波包含的原子列位置信息与整个聚焦图像系列中的信息量相同。仅对于充当弱相位对象的薄样本,可以从重构的复杂出射波的相位中检索此信息。

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