Removal of phase residues in electron holography.

Yoshio Takahashi, Tetsuya Akashi, Toshiaki Tanigaki
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Abstract

Electron holography provides quantitative phase information regarding the electromagnetic fields and the morphology of micro- to nano-scale samples. A phase image reconstructed numerically from an electron hologram sometimes includes phase residues, i.e. origins of unremovable phase discontinuities, which make it much more difficult to quantitatively analyze local phase values. We developed a method to remove the residues in a phase image by a combination of patching local areas of a hologram and denoising based on machine learning. The small patches for a hologram, which were generated using the spatial frequency information of the own fringe patterns, were pasted at each residue point by an algorithm based on sparse modeling. After successive phase reconstruction, the phase components with no dependency on the vicinity were filtered out by Gaussian process regression. We determined that the phase discontinuities that appeared around phase residues were removed and the phase distributions of an atomic resolution phase image of a Pt nanoparticle were sufficiently restored.

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去除电子全息摄影中的相位残留。
电子全息技术可提供有关电磁场和微米至纳米级样品形态的定量相位信息。从电子全息图中以数字方式重建的相位图像有时会包含相位残留,即不可移动的相位不连续的起源,这使得定量分析局部相位值变得更加困难。我们开发了一种方法,通过对全息图的局部区域进行修补和基于机器学习的去噪相结合的方法来去除相位图像中的残留物。全息图的小补丁是利用自身条纹图案的空间频率信息生成的,通过基于稀疏建模的算法将其粘贴到每个残差点上。在连续的相位重建之后,通过高斯过程回归滤除与附近区域无关的相位成分。我们确定,相位残基周围出现的相位不连续性已被消除,铂纳米粒子原子分辨率相位图像的相位分布得到了充分恢复。
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