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Functionalized fiber-optic long-period grating with reduced cladding size for humidity sensing

机译:具有减少的包层尺寸的功能化光纤长周期光栅,用于湿度感应

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摘要

Relative humidity (RH) is an important factor in the field of structural health monitoring, especially during the early stage of corrosion. Many methods have been proposed for humidity sensing, and one of the attractive sensors is fiber-optic long-period grating (LPG) sensors. Unfortunately, the current sensing sensitivity of this kind of sensors is limited. A thin fiber-optic LPG sensor with a self-assembled thin film of PAH~+/PAA~- is proposed and demonstrated for humidity measurements. The LPG sensor is inscribed in a single-mode fiber using a CO_2 laser, and the cladding size is reduced to about 27 μm. It shows that an LPG sensor with a reduced cladding size has an enhanced refractive index sensing characteristic, compared to those with normal cladding size due to the enhancement of the evanescent field. In a next step, selectivity is added to the LPG sensor coated with a film of PAH~+/PAA~- for functionalization to be sensitive to humidity. The resonance spectral responses of LPGs are experimentally investigated with respect to its sensitivity to a change in humidity that modifies the index of the nanolayer and the cladding, leading to a resonant wavelength shift. The experimental results show that the coated thin LPG has a highly sensitive resonance wavelength shift of -220.75 pm/%RH for an RH variation from 25% to 80%, of which the sensitivity is enhanced thrice compared to those with a normal cladding size. The proposed sensing setup opens LPG structures for a variety of sensing and detection applications.
机译:相对湿度(RH)是结构健康监测领域的一个重要因素,特别是在腐蚀的早期阶段。已经提出了许多方法进行湿度感测,并且其中一个有吸引力的传感器是光纤长周期光栅(LPG)传感器。不幸的是,这种传感器的电流传感灵敏度有限。提出了一种具有PAH〜+ / PAA〜 - 自组装薄膜的薄光纤LPG传感器,并用于湿度测量。使用CO_2激光器在单模光纤中刻录LPG传感器,并且包层尺寸降低至约27μm。结果表明,由于渐逝场的增强,具有减小的包层尺寸的LPG传感器具有增强的折射率感测特性。在下一步骤中,将选择性添加到涂有PAH〜+ / PAA〜 - 官能化膜的LPG传感器中,以对湿度敏感。通过对改变纳米层和包层的湿度的变化的敏感性来实验研究LPG的共振光谱响应,从而导致谐振波长偏移。实验结果表明,涂​​覆的薄LPG具有-220.75μm/%RH的高敏感的共振波长偏移,对于慢速变化,其中rh变异为25%至80%,其中敏感性与具有正常包层尺寸的人相比增强了三倍。所提出的感测设置为各种传感和检测应用打开LPG结构。

著录项

  • 来源
    《Optical engineering》 |2019年第3期|037105.1-037105.7|共7页
  • 作者单位

    Northwestern University Center for Smart Structures and Materials Evanston Illinois United States Northwestern University Department of Mechanical Engineering Evanston Illinois United States;

    University of Malaya Photonics Research Center Kuala Lumpur Malaysia;

    Northwestern University Center for Smart Structures and Materials Evanston Illinois United States Northwestern University Department of Mechanical Engineering Evanston Illinois United States;

    Northwestern University Center for Smart Structures and Materials Evanston Illinois United States Northwestern University Department of Mechanical Engineering Evanston Illinois United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    long-period grating; relative humidity; electrostatic self-assembly; optical fiber sensor;

    机译:长期光栅;相对湿度;静电自组装;光纤传感器;

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