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Prospects of linear reconstruction in atomic resolution electron holographic tomography

机译:原子分辨率电子全息层析成像中线性重建的前景

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Tomography commonly requires a linear relation between the measured signal and the underlying specimen property; for Electron Holographic Tomography this is given by the Phase Grating Approximation (PGA). While largely valid at medium resolution, discrepancies arise at high resolution imaging conditions. We set out to investigate the artefacts that are produced if the reconstruction still assumes the PGA even with an atomic resolution tilt series. To forego experimental difficulties the holographic tilt series was simulated. The reconstructed electric potential clearly shows peaks at the positions of the atoms. These peaks have characterisitic deformations, which can be traced back to the defocus a particular atom has in the holograms of the tilt series. Exchanging an atom for one of a different atomic number results in a significant change in the reconstructed potential that is well contained within the atom's peak. (C) 2014 Elsevier B.V. All rights reserved.
机译:层析成像通常要求所测信号与标本的特性之间存在线性关系。对于电子全息层析成像,这是由相位光栅近似(PGA)给出的。虽然在中等分辨率下基本有效,但在高分辨率成像条件下会出现差异。我们着手研究即使在原子分辨率倾斜序列的情况下重建仍采用PGA的情况下产生的伪像。为了避免实验困难,对全息倾斜系列进行了模拟。重建的电势清楚地显示出原子位置处的峰。这些峰具有特征变形,可以追溯到倾斜序列全息图中特定原子的散焦。将原子交换为不同原子序数之一会导致完全包含在原子峰内的重构电位发生重大变化。 (C)2014 Elsevier B.V.保留所有权利。

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