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Absolute distance measurement by dual-comb interferometry with multi-channel digital lock-in phase detection

机译:通过双梳形干涉法和多通道数字锁定相位检测进行绝对距离测量

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摘要

We present a dual-comb-based heterodyne multi-wavelength absolute interferometer capable of long distance measurements. The phase information of the various comb modes is extracted in parallel by a multi-channel digital lock-in phase detection scheme. Several synthetic wavelengths of the same order are constructed and the corresponding phases are averaged to deduce the absolute lengths with significantly reduced uncertainty. Comparison experiments with an incremental HeNe reference interferometer show a combined relative measurement uncertainty of 5.3 x 10(-7) at a measurement distance of 20 m. Combining the advantage of synthetic wavelength interferometry and dual-comb interferometry, our compact and simple approach provides sufficient precision for many industrial applications.
机译:我们提出了一种能够进行长距离测量的基于双梳的外差式多波长绝对干涉仪。通过多通道数字锁定相位检测方案并行提取各种梳状模式的相位信息。构造了几个相同阶数的合成波长,并对相应的相位求平均,以推导绝对长度,并且不确定性大大降低。使用增量HeNe参考干涉仪进行的比较实验显示,在20 m的测量距离处,组合的相对测量不确定度为5.3 x 10(-7)。结合合成波长干涉测量法和双梳形干涉测量法的优势,我们紧凑而简单的方法为许多工业应用提供了足够的精度。

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