Bundesanstalt für Materialforschung und -prüfung (BAM), Unter den Eichen 87, 12205, Berlin, Germany.
Sci Rep. 2023 Feb 17;13(1):2862. doi: 10.1038/s41598-023-29972-4.
A phase-sensitive optical time domain reflectometer based on coherent heterodyne detection of geometric phase in the beat signal of light, is reported for the first time to our knowledge. The use of the geometric phase to extract strain makes it immune to polarisation diversity fading. This is because a polarisation mismatch between the interfering beams is not a hindrance to its measurement. The geometric phase is calculated using the amplitude of the beat signal and individual beam intensities without any need for phase unwrapping. It is measured per beat period and can be equated with the traditionally measured dynamic phase with appropriate scaling. The results show that the system based on the geometric phase successfully measures strain, free from polarisation mismatch fading and phase unwrapping errors, providing a completely novel solution to these problems.
我们首次报道了一种基于相干外差探测光拍频信号几何相位的相位敏感光时域反射计。利用几何相位提取应变,使该方法不受偏振分集衰落的影响。这是因为干涉光束之间的偏振失配对其测量没有阻碍。几何相位是通过拍频信号的幅度和各个光束强度计算得到的,无需进行相位解缠。它是每拍周期进行测量的,可以与传统测量的动态相位进行适当的缩放来等效。结果表明,基于几何相位的系统成功地测量了应变,不受偏振失配衰落和相位解缠误差的影响,为解决这些问题提供了一种全新的解决方案。