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Minimization of spectral phase errors in spectrally resolved white light interferometry by the iterative least-squared phase-shifting method

机译:迭代最小二乘相移法最小化光谱分辨白光干涉法中的光谱相位误差

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摘要

We introduce an iterative least-squared phase-shifting method, reported as inherently insensitive to any types of phase-shifting errors, to calculate the spectral phase in phase-shifting spectrally resolved white light interferometry (PS-SRI). The actual phase shifts corresponding to all wavelengths can be reversely determined from the phase-shifted spectral interference fringes through least-squares fitting and the spectral phase is calculated by using the actual phase shifts in an iterative numerical manner. Because this method reduces the phase-shifting errors for calculating the spectral phase effectively, it can contribute to improving the accuracy of measuring topographic surface profiles. Moreover, it leads to accomplishing thin film thickness measurements less than 100 nm, in which most white light scanning interferometry and spectrally resolved white light interferometry (SRI) have difficulty because of mismatching measured spectral phase with the theoretical model by the spectral phase error. In this paper, a short description of the iterative least-squared phase-shifting method is presented and verified with simulations for calculating the topographic surface and thin film thickness profiles in PS-SRI.
机译:我们介绍了一种迭代最小二乘相移方法(据报道对任何类型的相移误差都不具有固有的敏感性),以计算相移光谱解析白光干涉仪(PS-SRI)中的光谱相位。可以通过最小二乘拟合从相移的光谱干涉条纹反向确定与所有波长相对应的实际相移,并且通过以迭代数值方式使用实际相移来计算光谱相位。因为此方法减少了有效地计算光谱相位的相移误差,所以它可以有助于提高测量地形表面轮廓的准确性。此外,这导致完成小于100 nm的薄膜厚度测量,其中大多数白光扫描干涉法和光谱分辨白光干涉法(SRI)由于光谱相位误差使测量的光谱相位与理论模型不匹配而难以实现。在本文中,对迭代最小二乘相移方法进行了简短描述,并通过计算PS-SRI中的地形表面和薄膜厚度轮廓的仿真进行了验证。

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