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Propagation of the measurement uncertainty in Fourier transform digital holographic interferometry

机译:傅里叶变换数字全息干涉术中测量不确定度的传播

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摘要

The derivation of expressions to evaluate the local standard uncertainty of the complex amplitude of the numerically reconstructed field as well as of the phase-change measurements resulting from Fourier- and quasi-Fourier transform digital holographic interferometry is presented. Applying the law of propagation of uncertainty, as defined in the “Guide to the expression of uncertainty in measurement,” to the digital reconstruction of holograms by Fourier transformation and to the subsequent calculation of the phase change between two such reconstructions results in a set of expressions, which allow the evaluation of the uncertainties of the complex amplitude and of the phase change at every pixel of the reconstruction in terms of the measured values and their standard uncertainty in the pixels of the original digital holograms. These expressions are increasingly simplified by first assuming a linear dependence between the squared uncertainty and the local value of the original holograms, and then considering that the object beam is a speckle pattern. We assess the behavior of the method by comparing the predicted standard uncertainty with the sample variance obtained from experiments conducted under repeatability conditions, and find a good agreement between both quantities.
机译:提出了用于评估数字重构场的复振幅的局部标准不确定性的表达式,以及由傅里叶和准傅里叶变换数字全息干涉法得出的相变测量值的表达式的推导。将“测量不确定度表示指南”中定义的不确定度传播定律应用于通过傅立叶变换对全息图进行数字重建,然后对两个此类重建之间的相变进行后续计算,得出一组这些表达式允许根据原始数字全息图像素中的测量值及其标准不确定性来评估重构每个像素处的复振幅和相位变化的不确定性。通过首先假设平方的不确定性和原始全息图的局部值之间的线性相关性,然后考虑物镜束是散斑图样,这些表达式将变得越来越简单。我们通过将预测的标准不确定性与在可重复性条件下进行的实验中获得的样本方差进行比较来评估该方法的行为,并在两个量之间找到了良好的一致性。

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