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基于七芯光子晶体光纤并采用横向错位熔接的与环境折射率无关的弯曲矢量传感器。

Ambient refractive index-independent bending vector sensor based on seven-core photonic crystal fiber using lateral offset splicing.

作者信息

Ou Zhilong, Yu Yongqin, Yan Peiguang, Wang Jishun, Huang Quandong, Chen Xue, Du Chenlin, Wei Huifeng

出版信息

Opt Express. 2013 Oct 7;21(20):23812-21. doi: 10.1364/OE.21.023812.

Abstract

A novel, simple, and compact optical fiber directional bending vector sensor based on Mach-Zehnder interferometer (MZI) is proposed and experimentally demonstrated. The device consists of a piece of seven-core photonic crystal fiber (PCF) sandwiched between two single mode fibers (SMFs) with a lateral offset splicing joint that covering two cores of PCF. Bending sensitivity of the seven-core PCF based MZI is changed by an axial rotation angle, which shows its capacity for recognizing positive and negative directions. Within a curvature range of -7.05 m-1 to 7.05 m-1, the calculated bending sensitivities of two resonant central wavelengths with opposite fiber orientations are 1.232 nm/m-1 and 1.174 nm/m-1, respectively. This novel MZI is formed by invoking interference between the LP01-like supermode and other higher order supermodes in the core, which leads to insensitive to ambient refractive index (ARI). We have also investigated the transmission characteristics of the sensor with the temperature change.

摘要

提出并通过实验演示了一种基于马赫-曾德尔干涉仪(MZI)的新型、简单且紧凑的光纤定向弯曲矢量传感器。该装置由一段七芯光子晶体光纤(PCF)夹在两根单模光纤(SMF)之间组成,采用横向错位熔接接头,覆盖PCF的两个芯。基于七芯PCF的MZI的弯曲灵敏度通过轴向旋转角度来改变,这表明其具有识别正负方向的能力。在-7.05 m-1至7.05 m-1的曲率范围内,两种具有相反光纤取向的共振中心波长的计算弯曲灵敏度分别为1.232 nm/m-1和1.174 nm/m-1。这种新型MZI是通过芯中类LP01超模与其他高阶超模之间的干涉形成的,这使得其对环境折射率(ARI)不敏感。我们还研究了传感器随温度变化的传输特性。

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