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A Novel and Small Curvature Sensor Based on Butterfly-Shape Mach-Zehnder Interferometer

机译:一种基于蝴蝶形马赫 - Zehnder干涉仪的新型和小曲率传感器

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A novel hollow-core fiber (HCF) curvature sensor based on a tapered HCF sandwiched between two single mode fibers (Butterfly-Shape Structure) is proposed and experimentally demonstrated. The collapsed region around the first fusion interface excites the high-order modes, and the butterfly shape couples the high-order modes back into the core and interferes with the fundamental mode in the second fusion interface. Simulation of the butterfly-shape structure is carried out using the beam propagation method to determine an optimized size of sensing element. The experimental results show that the variation of the interference spectrum light intensity is almost linearly proportional to the change of curvature, and the curvature sensitivity and resolution of the proposed sensor can be up to -10.9041dB/m~(-1) and 0.000917m~(-1) respectively in the range from 0.387 to 1.285 m~(-1). The proposed curvature sensor is compact size, high sensitive, and inexpensive.
机译:提出了一种新的空心芯纤维(HCF)曲率曲率传感器,其基于夹在两个单模纤维(蝶形结构)之间夹在两个单模纤维(蝶形结构)之间进行了实验证明。第一融合界面周围的折叠区域激发了高阶模式,蝶形形状将高阶模式耦合回核心,并干扰第二融合接口中的基本模式。使用光束传播方法进行蝴蝶形结构的仿真,以确定感测元件的优化尺寸。实验结果表明,干扰谱光强度的变化几乎是与曲率的变化线性成比例,并且所提出的传感器的曲率灵敏度和分辨率可以高达-10.9041db / m〜(-1)和0.000917m 〜(-1)分别为0.387至1.285 m〜(-1)。所提出的曲率传感器尺寸紧凑,敏感,廉价。

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