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Helicity Enhanced Torsion Sensor Based on Liquid Filled Twisted Photonic Crystal Fibers

机译:基于液体填充扭曲光子晶体光纤的螺旋度增强扭转传感器

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摘要

A highly sensitive torsion sensor can be constructed by combining a twisted photonic crystal fiber with a liquid-filled waveguide in its air-hole cladding. The torsion sensitivity of this type of sensor is determined directly by the phase-matching conditions between the fiber core mode and the liquid waveguide mode, which can be improved by tuning the helicity (denoted by the initial twist rate, ) of the twisted photonic crystal fiber. The enhancement mechanism of on the sensitivity of the proposed torsion sensor is investigated theoretically, followed by experimental verifications, and a torsion sensitivity as high as 446 nm∙mm∙rad can be obtained by tailoring these parameters. Experimental results show that the torsion sensitivity increases with decreasing from 3.142 to 3.925 rad/mm, which are in consistence with that of the numerical predictions. The demonstrated torsion sensor is expected to contribute to the development of highly sensitive torsion-related photonic crystal fiber devices.
机译:通过将扭曲的光子晶体光纤与填充在其气孔覆层中的液体波导相结合,可以构建高灵敏度的扭转传感器。这种类型的传感器的扭转灵敏度直接由光纤芯模和液体波导模之间的相位匹配条件确定,可以通过调整扭曲的光子晶体的螺旋度(以初始扭曲率表示)来提高这种灵敏度。纤维。从理论上研究了所提出的扭转传感器灵敏度的增强机理,随后进行了实验验证,通过调整这些参数可以获得高达446 nm∙mm∙rad的扭转灵敏度。实验结果表明,扭转灵敏度从3.142 rad / mm降低到3.925 rad / mm,与数值预测的结果一致。预计已证明的扭转传感器将有助于开发高灵敏度的扭转相关光子晶体光纤器件。

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