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Carrier squeezing interferometry with pi/4 phase shift: phase extraction in the presence of multi-beam interference

机译:具有pi / 4相移的载波压缩干涉测量法:存在多波束干扰时的相位提取

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摘要

Multi-beam interference exists in testing high-reflectivity surfaces with a Fizeau interferometer. In this paper, the multi-beam interference intensity was estimated as the sum of the first six order harmonics using the Fourier series expansion. Then, by adopting carrier squeezing interferometry with a pi/4 phase shift, an algorithm was proposed to extract the phase from multi-beam interferograms. To ensure the separation of the lobes of phase-shift errors and the phase in the frequency domain, conditions of the necessary linear carrier in the proposed algorithm were derived. Simulation results indicated that the phase retrieving precision is better than PV 0.008 lambda and RMS 0.001 lambda, even when the reflection coefficient of the test surface is as high as 0.9 and the phase shift varies within pi/4 +/- pi/20. Compared with the other algorithms, the proposed algorithm for multi-beam interference was validated by its good performance in the experiments, especially when the phase-shift error exists. (C) 2016 Optical Society of America
机译:使用Fizeau干涉仪测试高反射率表面时,存在多光束干涉。在本文中,使用傅里叶级数展开式将多束干扰强度估计为前六次谐波的总和。然后,通过采用具有π/ 4相移的载波压缩干涉仪,提出了一种从多光束干涉图中提取相位的算法。为了确保相移误差波瓣和频域相位的分离,推导了所提出算法中必要线性载波的条件。仿真结果表明,即使测试表面的反射系数高达0.9且相移在pi / 4 +/- pi / 20范围内变化,相位恢复精度也优于PV 0.008 lambda和RMS 0.001 lambda。与其他算法相比,该算法在实验中具有良好的性能,特别是在存在相移误差的情况下,验证了该算法的有效性。 (C)2016美国眼镜学会

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