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BPM analysis of all-optical fiber interferometric sensor based on a U-shape microcavity

机译:基于U型微腔的全光纤干涉传感器的BPM分析

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Reflectivity spectrum of beam propagation method (BPM), for the first time to the best of our knowledge, is realized and utilized to model all-optical fiber interferometric sensor formed by a U-shape microcavity embedded in a single mode optical fiber and illustrate the principle of sensor structures varied by the length and the depth of U-shape microcavity. BPM analysis gives a constructive guideline to get a high interferometric fringe visibility which is most important for sensing application. The simulated results are completely in agreement with the interferometric sensor principle of Fabry-Perot interferometer (FPI) theory. With the conclusion of FPI sensor, refractive index (RI) sensitivity and temperature sensitivity are then simulated and obtained as 1049±5.2nm/RIU (refractive index unit) within RI range of solutions and 1.04±0.03pm/°C respectively.
机译:据我们所知,光束传播方法(BPM)的反射光谱首次实现,并被用于建模由嵌入单模光纤中的U型微腔构成的全光纤干涉传感器,并举例说明了传感器结构的原理因U型微腔的长度和深度而异。 BPM分析提供了一个建设性的指导方针,以获取较高的干涉条纹可见性,这对于传感应用最为重要。仿真结果与法布里-珀罗干涉仪(FPI)理论的干涉传感器原理完全吻合。根据FPI传感器的结论,然后模拟了折射率(RI)灵敏度和温度灵敏度,并分别在溶液的RI范围和1.04±0.03pm /°C下获得了1049±5.2nm / RIU(折射率单位)。

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