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Spectral-Domain Measurements of Birefringence and Sensing Characteristics of a Side-Hole Microstructured Fiber

机译:侧孔微结构光纤的双折射谱域测量和传感特性

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摘要

We experimentally characterized a birefringent side-hole microstructured fiber in the visible wavelength region. The spectral dependence of the group and phase modal birefringence was measured using the methods of spectral interferometry. The phase modal birefringence of the investigated fiber increases with wavelength, but its positive sign is opposite to the sign of the group modal birefringence. We also measured the sensing characteristics of the fiber using a method of tandem spectral interferometry. Spectral interferograms corresponding to different values of a physical parameter were processed to retrieve the spectral phase functions and to determine the spectral dependence of polarimetric sensitivity to strain, temperature and hydrostatic pressure. A negative sign of the polarimetric sensitivity was deduced from the simulation results utilizing the known modal birefringence dispersion of the fiber. Our experimental results show that the investigated fiber has a very high polarimetric sensitivity to hydrostatic pressure, reaching −200 rad × MPa−1× m−1 at 750 nm.
机译:我们在可见光波长范围内对双折射侧孔微结构化纤维进行了实验表征。使用光谱干涉法测量该组的光谱依赖性和相位模态双折射。被研究光纤的相位模态双折射随波长增加,但其正号与群模态双折射的符号相反。我们还使用串联光谱干涉法测量了光纤的传感特性。处理与物理参数的不同值相对应的光谱干涉图,以检索光谱相位函数,并确定偏振敏感度对应变,温度和静水压力的光谱依赖性。利用已知的纤维的模态双折射色散,从模拟结果中得出偏振灵敏度的负号。我们的实验结果表明,所研究的光纤对静水压力具有极高的极化敏感性,在750 nm时达到-200 rad×MPa -1 ×m -1

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