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基于具有TCF-TF-TCF结构的在线马赫-曾德尔干涉仪同时测量折射率与温度或温度与轴向应变。

Simultaneous measurement of refractive index and temperature or temperature and axial strain based on an inline Mach-Zehnder interferometer with TCF-TF-TCF structure.

作者信息

Zhang Wujun, Wu Xuqiang, Zhang Gang, Shi Jinhui, Zuo Cheng, Fang Shasha, Gui Lei, Yu Benli

出版信息

Appl Opt. 2021 Feb 20;60(6):1522-1528. doi: 10.1364/AO.417124.

Abstract

A refractive index (RI) and temperature or a temperature and axial strain sensor based on an inline Mach-Zehnder interferometer with thin core fiber (TCF)-thin fiber (TF)-TCF structure is proposed and experimentally demonstrated, requiring only the cleaving and fusion splicing methods. The operation principle depends on the effect that the TF cladding modes interfere with the core mode as an optical coupler. The RI, temperature, or axial strain variations can lead to resonance dip variations in the interferometer spectra, and the RI, temperature, or axial strain sensitivity can be measured by monitoring the wavelength shifts of resonance dips. Then we can measure both RI and temperature, or temperature and axial strain through the demodulation matrix. Four sensors with different TF lengths are fabricated based on numerical simulation. A 15 mm long TF sensor displays an RI sensitivity as high as -174.357/, temperature sensitivities in the glycerin solution and the air of 12.47 and 26.19 pm/°C, and axial strain sensitivity of -3.43×10/µ. Moreover, due to its simple manufacture, high cost-effectiveness and compactness, the proposed sensor has a broad application prospect in physical, chemical, and biological sensing.

摘要

提出并通过实验验证了一种基于具有细芯光纤(TCF)-细光纤(TF)-TCF结构的在线马赫-曾德尔干涉仪的折射率(RI)与温度或温度与轴向应变传感器,该传感器仅需采用切割和熔接方法。其工作原理基于TF包层模作为光耦合器与芯模发生干涉的效应。RI、温度或轴向应变的变化会导致干涉仪光谱中的共振凹陷发生变化,通过监测共振凹陷的波长偏移可测量RI、温度或轴向应变灵敏度。然后我们可以通过解调矩阵测量RI和温度,或温度和轴向应变。基于数值模拟制作了四个不同TF长度的传感器。一个15毫米长的TF传感器显示出高达-174.357/的RI灵敏度、在甘油溶液和空气中分别为12.47和26.19 pm/°C的温度灵敏度以及-3.43×10/µ的轴向应变灵敏度。此外,由于其制造简单、成本效益高且结构紧凑,所提出的传感器在物理、化学和生物传感方面具有广阔的应用前景。

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