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首页> 外文期刊>Applied optics >Phase retrieval errors in standard Fourier fringe analysis of digitally sampled model interferograms
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Phase retrieval errors in standard Fourier fringe analysis of digitally sampled model interferograms

机译:数字采样模型干涉图的标准傅里叶条纹分析中的相位恢复误差

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摘要

We investigate the reliability of phase retrieval by use of the fringe Fourier analysis method for measuring the displacements of facets during the growth of equilibriumlike-shaped crystals. The mean phase change between two successive interferometric images contains an inherent error that emerges from the noninteger number of fringes in the image field. The magnitude of the retrieved phase error of the ideal fringe pattern is investigated as a function of spatial carrier frequency, of the initial phase setting, and of the deviation of the number of fringes from the nearest integer value. The suggested modified algorithm suppresses the error more than threefold.
机译:我们通过使用条纹傅里叶分析方法来测量相平衡形晶体生长过程中小平面的位移,从而研究相位恢复的可靠性。两个连续干涉图像之间的平均相变包含一个固有误差,该固有误差是由图像场中条纹的非整数数量产生的。根据空间载波频率,初始相位设置以及条纹数与最近的整数值之间的偏差,对理想条纹图样检索到的相位误差的大小进行研究。所提出的改进算法将误差抑制了三倍以上。

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