首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Highly sensitive temperature sensor based on cascaded HiBi-FLMs with the Vernier effect
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Highly sensitive temperature sensor based on cascaded HiBi-FLMs with the Vernier effect

机译:基于级联Hibi-FLM的高敏感温度传感器,具有游标效果

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摘要

We propose and experimentally demonstrate a highly sensitive temperature sensor based on cascaded high birefringence fiber loop mirrors (HiBi-FLMs) with the Vernier effect. The two HiBi-FLMs have almost the same free spectrum range (FSR), which can be regarded as two scales of different periods of an optical Vernier-scale, and act as the fixed part and the sliding part, respectively. A Gauss fitting algorithm is introduced to fit the Vernier spectrum envelope to accurately trace the spectral shift of the envelope. The temperature sensitivity and temperature resolution of the cascaded configuration are much larger than those of the individual HiBi-FLMs due to the Vernier effect. The experimental result shows that the temperature sensitivity of the proposed sensor can be improved from -1.723nm/degrees C (single HiBi-FLM) to -43nm/degrees C (cascaded configuration) by employing the Vernier effect, and the temperature resolution is enhanced from +/- 0.029 degrees C to +/- 0.001162 degrees C. The amplification factors for temperature sensitivity and temperature resolution are both 24.96, which shows good agreement with the theoretical predictions. The proposed sensor with huge temperature sensitivity, high resolution, and simple configuration may be a promising candidate for some applications that need precise temperature control. (C) 2020 Optical Society of America
机译:我们提出并通过试图基于级联的高双折射纤维环镜(Hibi-FLM)的高敏感温度传感器,具有游标效果。两个Hibi-FLM具有几乎相同的自由频谱范围(FSR),其可以被视为光学游标的不同时段的两个尺度,并且分别用作固定部分和滑动部分。引入了高斯拟合算法以适合游标频谱信封以精确地追踪信封的光谱偏移。由于vernier效应,级联配置的温度敏感性和温度分辨率远大于各个Hibi-FLM的敏感性和温度分辨率。实验结果表明,通过采用游标效应,所提出的传感器的温度敏感度可以从-1.723nm /℃(单次Hibi-FLM)到-43nm /℃(级联配置)提高,而温度分辨率得到增强从+/- 0.029°C到+/- 0.001162℃。温度敏感性和温度分辨率的放大因子均为24.96,表现出与理论预测的良好一致。所提出的传感器具有巨大的温度灵敏度,高分辨率和简单配置可能是需要精确温度控制的一些应用的有希望的候选者。 (c)2020美国光学学会

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    Beijing Jiaotong Univ Inst Lightwave Technol Key Lab All Opt Network &

    Adv Telecommun Network Minist Educ Beijing 100044 Peoples R China;

    Beijing Jiaotong Univ Inst Lightwave Technol Key Lab All Opt Network &

    Adv Telecommun Network Minist Educ Beijing 100044 Peoples R China;

    Beijing Jiaotong Univ Inst Lightwave Technol Key Lab All Opt Network &

    Adv Telecommun Network Minist Educ Beijing 100044 Peoples R China;

    Beijing Jiaotong Univ Inst Lightwave Technol Key Lab All Opt Network &

    Adv Telecommun Network Minist Educ Beijing 100044 Peoples R China;

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  • 正文语种 eng
  • 中图分类 光学;
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