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Analysis of the synchronous phase-shifting method in a white-light spectral interferometer

机译:白光光谱干涉仪中同步相移法的分析

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For white-light spectral interferometry, the phase information is usually retrieved via the Fourier transform method and the temporal phase-shifting method. In comparison, the synchronous phase-shifting method can be used to synchronously acquire interferometric signals with good accuracy and reduced noise. Therefore, it has potential for online measurement and is suitable for application in precision industries and for ultrahigh-speed measurement. In this work, a white-light spectral interferometer for synchronous phase shifting based on polarization interference was built, and the two-step phase-shifting algorithm was used to retrieve phase information. A variety of spectral interferometric signals were simulated based on the mathematical model of the two-step phase-shifting algorithm to illustrate the effects of differences in intensity and envelope shape, random noise, and phase-shift error on measurement of the absolute distance. Measurements of the absolute distance were conducted, and they indicated that the system had high accuracy. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License.
机译:对于白光谱干涉法,通常通过傅里叶变换方法和时间相移方法检索相位信息。相比之下,同步相移方法可用于同步地以良好的精度和降低噪声来获取干涉信号。因此,它具有在线测量的潜力,适用于精密行业和超高速度测量的应用。在这项工作中,建立了基于偏振干扰的同步相移的白光光谱干涉仪,并使用两步相位移位算法来检索相位信息。基于两步相位移位算法的数学模型来模拟各种光谱干涉信号,以说明强度和包络形状,随机噪声和相移误差对绝对距离的差异的影响。进行绝对距离的测量,并表明系统的精度高。光学社会根据创意公约归因于4.0许可的条款发布。

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    《Applied optics》 |2020年第10期|共9页
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