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Research on fiber loop coupled resonator slow light and displacement sensing technology

机译:光纤环耦合谐振器慢光位移传感技术研究

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Slow light technology is becoming a research hotspot because of light-matter interaction enhancement effects, especially sensitivity enhancement effects. This paper theoretically studied the technology of slowing light speed down based on fiber double-loop coupled resonator, which mainly carried on a numerical simulation about the loop loss influence on characteristics of slow light by using iterative and parameter matrix methods. The slow light time delay of 32.0668 ns was achieved in the experimental system. And then a micro-displacement sensing scheme using loop loss and a bending loss modulator was proposed and designed. In order to implement micro-displacement sensing, bending loss effect of single-mode fiber was induced into one loop to produce a controllable loss. Finally, a 2 pm displacement resolution and a 50 ns/mm displacement sensitivity of slow light micro-displacement sensing at the displacement range of 0-350 mu m were obtained from the experimental results. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于光-物质相互作用增强作用,尤其是灵敏度增强作用,慢光技术正成为研究热点。本文从理论上研究了基于光纤双环耦合谐振器的减慢光速的技术,该技术主要通过迭代和参数矩阵的方法,对环路损耗对慢光特性的影响进行了数值模拟。在实验系统中实现了32.0668 ns的慢光时间延迟。然后提出并设计了一种利用环路损耗和弯曲损耗调制器的微位移传感方案。为了实现微位移传感,将单模光纤的弯曲损耗效应引入一个环路,以产生可控的损耗。最后,从实验结果中获得了位移分辨率为2 pm和慢光微位移传感在位移范围为0-350μm时的位移灵敏度为50 ns / mm。 (C)2015 Elsevier B.V.保留所有权利。

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