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Synthetic wavelength interferometry of an optical frequency comb for absolute distance measurement

机译:用于绝对距离测量的光学频率梳的合成波长干涉法

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We present a synthetic-wavelength based heterodyne interferometer of optical frequency combs with wide consecutive measurement range for absolute distance measurement. The synthetic wavelength is derived from two wavelengths obtained by two band-pass filters. The interferometric phase of the synthetic wavelength is used as a marker for the pulse-to-pulse alignment, which greatly improves the accuracy of traditional peak finding method. The consecutive measurement range is enlarged by using long fiber to increase the path length difference of the reference and measurement arms. The length of the long fiber is stabilized according to the interferometric phase of a CW laser. The experimental results show the present system can realize an accuracy of 75?nm in 350?mm consecutive measurement range.
机译:我们提出了一种基于合成波长的光学频率梳的外差式干涉仪,具有宽的连续测量范围,可以进行绝对距离测量。合成波长是从两个带通滤光片获得的两个波长中得出的。合成波长的干涉相位用作脉冲到脉冲对准的标记,这大大提高了传统峰发现方法的准确性。通过使用长光纤来扩大连续测量范围,以增加参考臂和测量臂的路径长度差。长纤维的长度根据连续波激光器的干涉相位而稳定。实验结果表明,该系统在350mm连续测量范围内可以实现75nm的精度。

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