Zhang Shihua, Shan Dandna, Jin Hao, Lou Yingtian, Yan Liping, Chen Benyong
Opt Express. 2022 Oct 10;30(21):38880-38895. doi: 10.1364/OE.463472.
Frequency sweeping interferometry with reference interferometer based on sinusoidal phase modulating technique is proposed in this paper for absolute distance measurement. With the frequency of the external cavity diode laser (ECDL) swept continuously in sinusoidal, a HeNe laser was employed to monitor the drifts of the target and the reference length, and influences caused by drifts during the measurement were compensated in real time. Sinusoidal phase modulation with non-overlapping frequencies were applied to the two laser lights individually by two electro-optic modulators (EOM), and the interference phases corresponding to the two laser lights were extracted simultaneously using the phase generated carrier (PGC) demodulation based on frequency-division multiplex technique. Performance of the phase detection method has been verified by nanometer displacement measurements. Experimental results show that the measurement uncertainty can be considerably reduced by compensating the influences of drifts and by applying linear regression to get the ratio of interference phase changes between the measurement interferometer and the reference interferometer. Comparison of the absolute distance measurement with an incremental interferometer yields a measurement uncertainty of 10, which is in good agreement with the estimation of the measurement uncertainty.
本文提出了一种基于正弦相位调制技术的带参考干涉仪的频率扫描干涉测量法用于绝对距离测量。在外腔二极管激光器(ECDL)的频率以正弦形式连续扫描时,采用氦氖激光器监测目标和参考长度的漂移,并实时补偿测量过程中由漂移引起的影响。通过两个电光调制器(EOM)分别对两束激光施加频率不重叠的正弦相位调制,并基于频分复用技术利用载波相位生成(PGC)解调同时提取对应于两束激光的干涉相位。通过纳米级位移测量验证了相位检测方法的性能。实验结果表明,通过补偿漂移影响并应用线性回归以获得测量干涉仪与参考干涉仪之间干涉相位变化的比值,可显著降低测量不确定度。将绝对距离测量结果与增量干涉仪进行比较,得到的测量不确定度为10,这与测量不确定度的估计结果吻合良好。