Shen Changyu, Zhong Chuan, You Yang, Chu Jinlei, Zou Xin, Dong Xinyong, Jin Yongxing, Wang Jianfeng, Gong Huaping
Institute of Optoelectronic Technology, China Jiliang University, Hangzhou, 310018, China.
Opt Express. 2012 Jul 2;20(14):15406-17. doi: 10.1364/OE.20.015406.
A curvature sensor based on a polarization-dependent in-fiber Mach-Zehnder interferometer (MZI) is proposed. The MZI is fabricated by core-offset fusion splicing one section of polarization maintaining fiber (PMF) between two single mode fibers (SMFs). Two independent interference patterns corresponding to the two orthogonal polarization modes for the PMF are obtained. The couple efficiency between the core mode and the cladding mode decreased with the increasing of the bending on the MZI part. The curvature variation on the MZI part can be obtained by detecting the fringe visibility of the interference patterns. A difference arithmetic demodulation method is used to reduce the effects of the light source power fluctuations and temperature cross-sensitivity. Experimental results show that maximal sensitivity of -0.882 dB/m(-1) is obtained under a measurement range of 0.1 to 0.35 m(-1) for the curvature sensor. With the use of difference arithmetic demodulation method, the temperature-curvature cross-sensitivity and light source power fluctuations effects on the proposed sensor are decreased by 94% and 91%, respectively.
提出了一种基于偏振相关光纤马赫曾德尔干涉仪(MZI)的曲率传感器。该MZI通过在两根单模光纤(SMF)之间熔接一段保偏光纤(PMF)并使其纤芯偏移来制作。获得了对应于PMF两个正交偏振模式的两个独立干涉图样。随着MZI部分弯曲程度的增加,纤芯模式与包层模式之间的耦合效率降低。通过检测干涉图样的条纹可见度可得到MZI部分的曲率变化。采用差分算法解调方法来降低光源功率波动和温度交叉敏感性的影响。实验结果表明,该曲率传感器在0.1至0.35 m⁻¹的测量范围内获得了-0.882 dB/m⁻¹的最大灵敏度。使用差分算法解调方法后,所提出传感器的温度-曲率交叉敏感性和光源功率波动影响分别降低了94%和91%。