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首页> 外文期刊>Lightwave Technology, Journal of >Highly Sensitive Current Sensor Based on an Optical Microfiber Loop Resonator Incorporating Low Index Polymer Overlay
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Highly Sensitive Current Sensor Based on an Optical Microfiber Loop Resonator Incorporating Low Index Polymer Overlay

机译:基于集成了低折射率聚合物覆盖层的光学微纤维环形谐振器的高灵敏度电流传感器

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摘要

A highly sensitive current sensor based on an optical microfiber loop resonator (MLR) incorporating low index polymer is proposed and experimentally demonstrated. The microfiber with a waist diameter of 2 μm is wrapped around the nichrome wire with low index polymer overlay to realize the MLR as the highly sensitive current sensor. Low index polymer overlay can successfully reduce round-trip fractional loss resulting in the improvement of the Q-factor () and the finesse () of the MLR around the nichrome wire. The use of the microfiber with a waist diameter of 2 μm and low index polymer with high thermal property can effectively improve the current sensitivity of the proposed MLR to be 437.9 pm/A.
机译:提出并通过实验证明了一种基于光学微纤维环谐振器(MLR)的低灵敏度聚合物的高灵敏度电流传感器。腰部直径为2μm的超细纤维包裹在镍铬合金丝上,并覆盖低折射率的聚合物,从而将MLR实现为高度敏感的电流传感器。低折射率聚合物覆盖层可成功减少往返分数损失,从而改善镍铬合金丝周围的MLR的Q因子()和精细度()。使用腰部直径为2μm的超细纤维和具有高热性能的低折射率聚合物可以有效地将建议的MLR的电流灵敏度提高到437.9 pm / A。

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