Statkiewicz-Barabach Gabriela, Olszewski Jacek, Mergo Pawel, Urbanczyk Waclaw
Department of Optics and Photonics, Faculty of Fundamental Problems of Technology, Wroclaw University of Science and Technology, 50-370 Wroclaw, Poland.
Laboratory of Optical Fiber Technology, Maria Curie-Sklodowska University, 20-031 Lublin, Poland.
Sensors (Basel). 2017 Jul 18;17(7):1648. doi: 10.3390/s17071648.
We present a comprehensive study of an in-line Mach-Zehnder intermodal interferometer fabricated in a boron-doped two-mode highly birefringent microstructured fiber. We observed different interference signals at the output of the interferometer, related to the intermodal interference of the fundamental and the first order modes of the orthogonal polarizations and a beating of the polarimetric signal related to the difference in the group modal birefringence between the fundamental and the first order modes, respectively. The proposed interferometer was tested for measurements of hydrostatic pressure and temperature for different alignments of the input polarizer with no analyzer at the output. The sensitivities to hydrostatic pressure of the intermodal interference signals for - and -polarizations had an opposite sign and were equal to 0.229 nm/MPa and -0.179 nm/MPa, respectively, while the temperature sensitivities for both polarizations were similar and equal 0.020 nm/°C and 0.019 nm/°C. In the case of pressure, for the simultaneous excitation of both polarization modes, we observed a displacement of intermodal fringes with a sensitivity depending on the azimuth of the input polarization state, as well as on the displacement of their envelope with a sensitivity of 2.14 nm/MPa, accompanied by a change in the fringes visibility. Such properties of the proposed interferometer allow for convenient adjustments to the pressure sensitivity of the intermodal fringes and possible applications for the simultaneous interrogation of temperature and pressure.
我们展示了一项关于在掺硼双模高双折射微结构光纤中制造的在线马赫-曾德尔干涉仪的综合研究。我们在干涉仪输出端观察到了不同的干涉信号,分别与正交偏振的基模和一阶模的模间干涉以及与基模和一阶模之间的群模双折射差异相关的偏振信号拍频有关。所提出的干涉仪在输出端没有分析仪的情况下,针对不同输入偏振器对准方式进行了静水压力和温度测量测试。对于 - 偏振和 - 偏振的模间干涉信号,其对静水压力的灵敏度具有相反的符号,分别等于0.229 nm/MPa和 -0.179 nm/MPa,而两种偏振的温度灵敏度相似,分别为0.020 nm/°C和0.019 nm/°C。在压力情况下,对于两种偏振模式的同时激发,我们观察到模间条纹的位移,其灵敏度取决于输入偏振态的方位,以及它们包络的位移,灵敏度为2.14 nm/MPa,同时条纹可见度发生变化。所提出的干涉仪的这些特性允许方便地调整模间条纹的压力灵敏度,并可能用于同时询问温度和压力。