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Nanometer-Scale Vibration Measurement Using an Optical Quadrature Interferometer Based on 3 × 3 Fiber-Optic Coupler

机译:基于3×3光纤耦合器的光学正交干涉仪进行纳米级振动测量

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摘要

We propose a nanometer-scale displacement or vibration measurement system, using an optical quadrature interferometer and the post-processing technique that extracts the parameters necessary for characterizing the interferometric system. Using a 3 × 3 fiber-optic coupler, the entire complex interference signal could be reconstructed with two interference signals measured at two return ports of the coupler. The intrinsic phase difference between the return ports was utilized to obtain the quadratic part of the interference signal, which allowed one to reconstruct the entire complex interference signal. However, the two measured signals were appreciably affected by the unequal detector gains and non-uniform intrinsic phases of the coupler. Fortunately, we could find that the Lissajous curve plotted by the two signals of the interferometric system would form an ellipse. Therefore, by fitting the measured Lissajous curve to an ellipse, we could extract the parameters characterizing the actual system, which allowed the nanometer-scale measurement. Experimental results showed that a 20 kHz sinusoidal vibration with an amplitude of 1.5 nm could be measured with a standard deviation of 0.4 nm.
机译:我们提出了一种使用光学正交干涉仪和后处理技术的纳米级位移或振动测量系统,该技术提取了表征干涉系统所需的参数。使用3×3光纤耦合器,可以使用在耦合器的两个返回端口处测得的两个干扰信号来重构整个复杂干扰信号。利用返回端口之间的固有相位差来获得干扰信号的二次部分,从而可以重构整个复数干扰信号。但是,两个测量信号明显受到不相等的检测器增益和耦合器固有相位不均匀的影响。幸运的是,我们可以发现干涉仪系统的两个信号绘制的李沙育曲线将形成一个椭圆。因此,通过将测量的Lissajous曲线拟合为椭圆,我们可以提取表征实际系统的参数,从而可以进行纳米级测量。实验结果表明,可以测量振幅为1.5 nm的20 kHz正弦振动,标准偏差为0.4 nm。

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