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Reducing phase retrieval errors in Fourier analysis of 2-dimensional digital model interferograms

机译:减少二维数字模型干涉图的傅立叶分析中的相位检索误差

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摘要

In order to measure the displacements of facets on a growing spherical Cu_(2-δ)Se crystal with sub-nanometre resolution, we investigated the reliability and accuracy of standard method of Fourier analysis of digital laser interferograms. Guided by realistic experimental conditions (two-dimensional (2D) interferograms), starting from 2D model interferograms and using original custom designed Gaussian filtering window and multistage unwrapping procedure of the retrieved phase, we demonstrate for a considerable parameter range the non-negligible inherent phase retrieval error due to non-integer number of fringes within the digital image. Our results indicate an intermediate parameter range where the error is acceptably small. We introduce an algorithm modification that significantly reduces the error, especially for low and high fringe densities. In the experimentally most common case of diagonal fringes the reduced error is an order of magnitude smaller than for nearly one-dimensional case within almost entire parameter space.
机译:为了测量亚纳米级分辨率的球形Cu_(2-δ)Se晶体上刻面的位移,我们研究了数字激光干涉图傅里叶分析标准方法的可靠性和准确性。在实际的实验条件(二维(2D)干涉图)的指导下,从2D模型干涉图开始,并使用原始定制设计的高斯滤波窗口和所检索相的多级展开程序,我们证明了在相当大的参数范围内不可忽略的固有相由于数字图像中条纹的数量非整数,导致检索错误。我们的结果表明中间参数范围的误差可以接受。我们引入了一种算法修改,可显着降低误差,尤其是对于低和高条纹密度的情况。在实验上最常见的对角条纹情况下,减小的误差比在几乎整个参数空间内的几乎一维情况小一个数量级。

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