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首页> 外文期刊>Optics Letters >Ultrahigh sensitivity polarimetric strain sensor based upon D-shaped optical fiber and surface plasmon resonance technology
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Ultrahigh sensitivity polarimetric strain sensor based upon D-shaped optical fiber and surface plasmon resonance technology

机译:基于D形光纤和表面等离子体共振技术的超高灵敏度极化应变传感器

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摘要

An ultrahigh sensitivity polarimetric strain sensor is proposed based upon a four-layer D-shaped optical fiber and surface plasmon resonance (SPR) technology. In contrast to existing SPR-based sensors, which are based on changes in the refractive index of the overlayer, the sensor proposed in this study is based on the change in the refractive index of the fiber core in response to the application of an axial load. Specifically, the phase difference between the P and S waves after passing through the sensor under SPR conditions is measured using a common-path heterodyne interferometer and is used to determine the corresponding change in the refractive index of the core, from which the strain is then inversely derived. The experimental results show that the sensitivity of the proposed sensor is around 2.19 X 10~(4) deg/epsilon, i.e., degree/strain. By contrast, that of a conventional (non-SPR) polarimetric fiber sensor is just 5.2 X 10~(2) deg/epsilon. To the best of the authors' knowledge, the sensor proposed in this study represents the first reported attempt to exploit the refractive index change of the core of an SPR-based fiber sensor for strain measurement purposes.
机译:提出了一种基于四层D形光纤和表面等离子体共振(SPR)技术的超高灵敏度极化应变传感器。与基于覆盖层折射率变化的现有基于SPR的传感器不同,本研究中提出的传感器基于响应轴向载荷的纤芯折射率变化。具体而言,使用共径外差干涉仪测量在SPR条件下穿过传感器后的P波和S波之间的相位差,并用于确定纤芯折射率的相应变化,然后从中得出应变反推。实验结果表明,所提出的传感器的灵敏度为约2.19×10〜(4)度/ε,即度/应变。相比之下,传统的(非SPR)偏振光纤传感器的反射率仅为5.2 X 10〜(2)度/ε。据作者所知,本研究中提出的传感器代表了首次报道的尝试,将基于SPR的光纤传感器的纤芯的折射率变化用于应变测量目的。

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