Advances in Phase Retrieval by Transport of Intensity Equation

Dingfu Chen, A. Asundi, L. Sui, Chongtian Huang, Chi Wang, Yingjie Yu
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Abstract

There are many factors in the calculations of Transport of Intensity Equation, which may lead to the uncertainty of the retrieved phase. In this paper, effect of these parameters such as defocus distance, focus plane and magnification, on the results is studied. It is hoped that this would provide a more robust and reliable method for phase and optical height measurement. Furthermore, the effect of intensity derivatives calculated using two defocussed images as opposed to multiple images is also considered. A microlens array is chosen as the test sample in a commercial transmissive Transport of Intensity Equation system. From this study, it is concluded that the biggest factor influencing the result is the magnification, which is seen to provided totally different phase value for the same shape. Incorrect defocus distance or in-focus plane also lead to inaccurate reconstruction results while higher order differential provides better and more stable results than traditional two image differential.
强度方程输运反演相位的研究进展
在强度输运方程的计算中,有许多因素会导致反演相位的不确定性。本文研究了离焦距离、聚焦平面和放大倍数等参数对结果的影响。希望这将为相位和光学高度测量提供一种更可靠的方法。此外,还考虑了使用两个离焦图像计算的强度导数的影响,而不是使用多个图像。选用微透镜阵列作为商用传输强度方程系统的测试样本。通过研究得出,影响结果的最大因素是放大倍数,对于相同的形状,放大倍数可以提供完全不同的相位值。离焦距离或焦内平面不正确也会导致重建结果不准确,而高阶微分比传统的两像微分提供了更好更稳定的重建结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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