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Fiber-optic evanescent wave sensor with a segmented structure

机译:具有分段结构的光纤e逝波传感器

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摘要

A segmented structure optic fiber sensor is proposed and demonstrated; it is based on evanescent wave absorption theory. The waveguide modes of the segmented structure are simulated and analyzed by using the beam propagation method, which shows the high-order modes are excited repeatedly at the first transition of each segmented region. The effect of the number of segments and the core diameters on the sensitivity of the sensors is investigated experimentally. The sensitivity of the sensors is tested by using different concentrations of methylene blue solution. The experimental results show that our sensor's sensitivity is ~0.0476 L/g, which is two times higher than that of the conventional single straight sensor, with the same core diameters and length of the sensing region, and the absorbance is linearly proportional to the number of segments, while being inversely proportional to the residue core diameter of the etched segments within the concentration range from 2 to 14 g/L. These results are consistent with theoretical models and simulation analysis. The proposed sensor not only has high sensitivity, but it is also robust due to the large core diameter of the segmented region, which is suitable for materials spectrum measurements.
机译:提出并演示了一种分段结构的光纤传感器。它基于e逝波吸收理论。通过使用束传播方法对分段结构的波导模式进行了仿真和分析,结果表明高阶模式在每个分段区域的第一个过渡处被重复激发。实验研究了段数和芯直径对传感器灵敏度的影响。通过使用不同浓度的亚甲蓝溶液测试传感器的灵敏度。实验结果表明,在相同的芯径和感应区域长度的情况下,我们的传感器的灵敏度为〜0.0476 L / g,是传统单直线传感器的两倍,吸收率与数量成线性比例关系。在2至14g / L的浓度范围内,与蚀刻的片段的残留核直径成反比。这些结果与理论模型和仿真分析是一致的。所提出的传感器不仅具有高灵敏度,而且由于分段区域的大芯径而具有鲁棒性,这适用于材料光谱测量。

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