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Investigation of Side-Polished Panda Fibers for Strain Measurement and Surface Plasmon Resonance-Based Biochemical Sensing

机译:侧抛光熊猫纤维对应变测量和表面等离子体共振的生化感应

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摘要

We propose and experimentally demonstrate a Sagnac interferometer for strain measurements in side-polished birefringent fibers. The interferometer is fabricated by welding a section of side-polished panda fiber to a 3 dB coupler. Experimental results show birefringence decreased as the polish depth increased, and strain sensitivity linearly increased with increasing the polish length. We find that the use of polishing birefringent fibers is a very effective method for improving strain sensitivity. A relatively small polishing length (40 mm) could effectively increase strain sensitivity from $19.66 ext{pm}/muarepsilon$ to $37.12 ext{pm}/muarepsilon$ in the first type of sample. In addition, a thin-film gold coating is applied to the polished fiber surface to produce a biochemical sensor utilizing surface plasmon resonance (SPR). Experimental results indicate that the SPR absorption and the figure of merit (FOM) are different in the two types of samples. With the analyte refractive index (RI) varying from 1.32 to 1.40, the sensitivity increases from 800 nm/RIU to 3500 nm/RIU and the FOM increases from 14.8 to 52.2 in the first type of sample. These values of the FOM are approximately twice as high as that of an SPR fiber sensor based on a D-shaped single mode fiber in the same RI environment. These results suggest a D-shaped panda fiber could develop promising fiber devices for the internet of things sensing technology.
机译:我们提出并通过实验展示了侧抛光双折射纤维中的应变测量的凸角干涉仪。干涉仪通过将侧抛光的熊猫纤维焊接到3dB耦合器来制造干涉仪。实验结果表明,随着抛光深度的增加,双折射减少,随着抛光长度的增加,应变敏感性线性地增加。我们发现使用抛光双折射纤维是一种非常有效的改善应变敏感性的方法。相对较小的抛光长度(40mm)可以有效地提高应变灵敏度 $ 19.66 text {pm } / mu varepsilon $ $ 37.12 text {pm} / mu varepsilon $ 在第一种类型的样品中。此外,将薄膜金涂层施加到抛光的纤维表面上,以产生利用表面等离子体共振(SPR)的生物化学传感器。实验结果表明,两种样品中的SPR吸收和功绩图(FOM)是不同的。随着从1.32到1.40的分析物折射率(RI),敏感性从800nm / Riu增加到3500nm / Riu,并且FOM在第一类样品中从14.8到52.2增加。 FOM的这些值大约是基于同一RI环境中的D形单模光纤的SPR光纤传感器的两倍。这些结果表明D形熊猫光纤可以为感测技术的物联网开发有前途的纤维装置。

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