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An etched chirped fiber Bragg grating for measurement of refractive index and temperature pattern

机译:蚀刻chi光纤布拉格光栅,用于测量折射率和温度模式

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摘要

In this work, partially etched chirped fiber Bragg grating (pECFBG) for the real-time multi-parameter measurement of temperature and refractive index is proposed. The sensor is fabricated by wet-etching a portion of a linearly chirped FBG with linear chirp profile. Obtained CFBG has two active areas: the unetched part of the grating that can be used either as a uniform temperature sensor, or to detect thermal gradients experienced through the grating length; the etched part, besides having a similar thermal sensitivity, is exposed to refractive index sensing through the variations of external refractive index. Overall, the pECFBG structure behaves as a compact sensor with multi-parameter capability, that can both measure temperature and refractive index on the same grating, but also spatially resolve temperature detection through the grating section. The results have been validated through both a model and experimental setup, showing that the mutual correlation algorithm applied to different spectral parts of the grating is able to discriminate between uniform and gradient-shaped temperature profiles, and refractive index changes. The reflected spectra showed a clear correlation between the RI change of the surrounding media and spectral shift with temperature variations.
机译:在这项工作中,提出了部分蚀刻的chi光纤布拉格光栅(pECFBG),用于温度和折射率的实时多参数测量。通过湿法蚀刻线性-轮廓的线性profile FBG的一部分来制造传感器。所获得的CFBG具有两个有效区域:未刻蚀的光栅部分,可用作均匀的温度传感器,或检测在光栅长度上经历的热梯度;蚀刻部分除了具有相似的热敏性外,还通过外部折射率的变化暴露于折射率感应下。总的来说,pECFBG结构表现为具有多参数功能的紧凑型传感器,既可以测量同一光栅上的温度和折射率,也可以通过光栅部分在空间上解决温度检测问题。通过模型和实验装置对结果进行了验证,结果表明,应用于光栅不同光谱部分的互相关算法能够区分均匀和梯度形状的温度曲线以及折射率变化。反射光谱显示周围介质的RI变化与光谱变化与温度变化之间存在明显的相关性。

著录项

  • 来源
    《Optics in health care and biomedical optics VIII》|2018年|108203B.1-108203B.7|共7页
  • 会议地点 Beijing(CN)
  • 作者单位

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000,School of engineering, Nazarbayev University, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000,School of engineering, Nazarbayev University, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000,School of engineering, Nazarbayev University, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    School of engineering, Nazarbayev University, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

    Laboratory of biosensors and bioinstruments, National Laboratory Astana, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000,School of engineering, Nazarbayev University, 53 Kabanbay batyr ave, Astana, Kazakhstan, 010000;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chirped fiber Bragg grating (cFBG); FBG sensors; etching; fiber optic sensors; refractive index (RI); temperature pattern; sensitivity; hydrofluoric acid (HF); interrogator;

    机译:fiber光纤布拉格光栅(cFBG); FBG传感器;蚀刻光纤传感器;折射率(RI);温度模式灵敏度;氢氟酸(HF);审讯者;
  • 入库时间 2022-08-26 14:33:05

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