Soto Marcelo A, Lu Xin, Martins Hugo F, Gonzalez-Herraez Miguel, Thévenaz Luc
Opt Express. 2015 Sep 21;23(19):24923-36. doi: 10.1364/OE.23.024923.
In this paper a technique to measure the distributed birefringence profile along optical fibers is proposed and experimentally validated. The method is based on the spectral correlation between two sets of orthogonally-polarized measurements acquired using a phase-sensitive optical time-domain reflectometer (ϕOTDR). The correlation between the two measured spectra gives a resonance (correlation) peak at a frequency detuning that is proportional to the local refractive index difference between the two orthogonal polarization axes of the fiber. In this way the method enables local phase birefringence measurements at any position along optical fibers, so that any longitudinal fluctuation can be precisely evaluated with metric spatial resolution. The method has been experimentally validated by measuring fibers with low and high birefringence, such as standard single-mode fibers as well as conventional polarization-maintaining fibers. The technique has potential applications in the characterization of optical fibers for telecommunications as well as in distributed optical fiber sensing.
本文提出了一种测量沿光纤分布的双折射分布的技术,并通过实验进行了验证。该方法基于使用相敏光时域反射仪(ϕOTDR)获取的两组正交偏振测量之间的光谱相关性。两个测量光谱之间的相关性在频率失谐处给出一个共振(相关)峰,该频率失谐与光纤两个正交偏振轴之间的局部折射率差成正比。通过这种方式,该方法能够在沿光纤的任何位置进行局部相位双折射测量,从而可以用米级空间分辨率精确评估任何纵向波动。通过测量具有低双折射和高双折射的光纤,如标准单模光纤以及传统保偏光纤,对该方法进行了实验验证。该技术在电信光纤表征以及分布式光纤传感方面具有潜在应用。