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Absolute distance measurement by dual-comb interferometry with adjustable synthetic wavelength

机译:合成波长可调的双梳干涉法绝对距离测量

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Absolute distances were measured using two femtosecond lasers of different pulse repetition rates by revisiting the dual-comb interferometric method proposed by Coddington et al (2009 Nature Photon. 3 351-6). The apparatus built for experiments was designed to eliminate the dead zones in the measurement range by separating the measurement pulses from the reference pulses using orthogonal polarization. In addition, the pulse repetition rate of the signal laser was made tunable in order to extend the non-ambiguity range (NAR) by adaptively adjusting the synthetic wavelength in consideration of the de facto measurement stability in the air. Actual tests performed in the open air proved that a target distance of 69.3 m is measured without interruptions at a 200 μs update rate in the presence of a ~170 μm drift of the optical path length caused by the fluctuation of the refractive index of air. The proposed hardware system design for effective NAR extension will facilitate the use of dual-comb interferometry for various terrestrial applications.
机译:通过回顾Coddington等人(2009 Nature Photon。3 351-6)提出的双梳干涉法,使用两个具有不同脉冲重复频率的飞秒激光器来测量绝对距离。设计用于实验的设备旨在通过使用正交极化将测量脉冲与参考脉冲分开来消除测量范围内的死区。另外,考虑到在空气中的实际测量稳定性,通过自适应地调节合成波长来使信号激光器的脉冲重复频率可调,以扩展非模糊范围(NAR)。在露天进行的实际测试证明,由于空气折射率的波动而导致光程长度出现〜170μm的漂移,因此以200μs的更新速率测量了69.3 m的目标距离而没有中断。为有效的NAR扩展而提出的硬件系统设计将有助于在各种地面应用中使用双梳形干涉测量法。

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