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基于游标效应的用于增强弯曲传感的级联多芯光纤干涉仪。

Cascaded multicore fiber interferometers for enhanced bending sensing based on the Vernier effect.

作者信息

Ou Jia-le, Deng Hao-Wen, Wu Chuang, Li Jie, Guan Bai-Ou

出版信息

Opt Express. 2024 Apr 8;32(8):14143-14153. doi: 10.1364/OE.521276.

Abstract

In this paper, cascaded modal interferometers constructed by strongly-coupled seven-core fiber (SC-SCF) with different lengths are demonstrated for enhanced bending sensing based on Vernier effect. The free spectral range (FSR) of a single SC-SCF interferometer is determined by the length of SC-SCF. Two SC-SCF interferometers with different FSRs are cascaded, in which, one functions as the sensor while the other functions as the reference. The wavelength shift of the envelope of the output spectrum is much larger than that of a single SC-SCF interferometer due to the Vernier effect. Therefore, enhanced sensing can be achieved. Experimental results show that the bending sensitivity of the proposed sensor is improved from -2.20 nm/m (single SC-SCF interferometer) to 42.32 nm/m (cascaded SC-SCF interferometers). The temperature response of the sensor is also investigated. Our proposed cascaded SC-SCF sensor has advantages of high sensitivity, ease of fabrication, and low cost. It is attractive for high precision bending sensing applications.

摘要

本文展示了由不同长度的强耦合七芯光纤(SC-SCF)构建的级联模态干涉仪,用于基于游标效应的增强弯曲传感。单个SC-SCF干涉仪的自由光谱范围(FSR)由SC-SCF的长度决定。将两个具有不同FSR的SC-SCF干涉仪级联,其中一个用作传感器,另一个用作参考。由于游标效应,输出光谱包络的波长偏移比单个SC-SCF干涉仪的波长偏移大得多。因此,可以实现增强传感。实验结果表明,所提出传感器的弯曲灵敏度从-2.20 nm/m(单个SC-SCF干涉仪)提高到42.32 nm/m(级联SC-SCF干涉仪)。还研究了传感器的温度响应。我们提出的级联SC-SCF传感器具有灵敏度高、易于制造和成本低的优点。它对高精度弯曲传感应用具有吸引力。

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