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用于矢量弯曲测量的蚀刻多芯光纤中的平行法布里-珀罗干涉仪。

Parallel Farby-Perot Interferometers in an Etched Multicore Fiber for Vector Bending Measurements.

作者信息

Wang Kang, Ji Wei, Xiong Cong, Wang Caoyuan, Qin Yu, Shen Yichun, Xiao Limin

机构信息

Advanced Fiber Devices and Systems Group, Key Laboratory of Micro and Nano Photonic Structures (MoE), Key Laboratory for Information Science of Electromagnetic Waves (MoE), Shanghai Engineering Research Center of Ultra-Precision Optical Manufacturing, School of Information Science and Technology, Fudan University, Shanghai 200433, China.

Zhongtian Technology Advanced Materials Co., Ltd., Nantong 226009, China.

出版信息

Micromachines (Basel). 2024 Nov 21;15(12):1406. doi: 10.3390/mi15121406.

Abstract

Vector bending sensors can be utilized to detect the bending curvature and direction, which is essential for various applications such as structural health monitoring, mechanical deformation measurement, and shape sensing. In this work, we demonstrate a temperature-insensitive vector bending sensor via parallel Farby-Perot interferometers (FPIs) fabricated by etching and splicing a multicore fiber (MCF). The parallel FPIs made in this simple and effective way exhibit significant interferometric visibility with a fringe contrast over 20 dB in the reflection spectra, which is 6 dB larger than the previous MCF-based FPIs. And such a device exhibits a curvature sensitivity of 0.207 nm/m with strong bending-direction discrimination. The curvature magnitude and orientation angle can be reconstructed through the dip wavelength shifts in two off-diagonal outer-core FPIs. The reconstruction results of nine randomly selected pairs of bending magnitudes and directions show that the average relative error of magnitude is ~4.5%, and the average absolute error of orientation angle is less than 2.0°. Furthermore, the proposed bending sensor is temperature-insensitive, with temperature at a lower sensitivity than 10 pm/°C. The fabrication simplicity, high interferometric visibility, compactness, and temperature insensitivity of the device may accelerate MCF-based FPI applications.

摘要

矢量弯曲传感器可用于检测弯曲曲率和方向,这对于诸如结构健康监测、机械变形测量和形状传感等各种应用至关重要。在这项工作中,我们通过蚀刻和拼接多芯光纤(MCF)制造的平行法布里-珀罗干涉仪(FPI)展示了一种对温度不敏感的矢量弯曲传感器。以这种简单有效的方式制作的平行FPI在反射光谱中表现出显著的干涉可见度,条纹对比度超过20 dB,比之前基于MCF的FPI大6 dB。并且这种器件表现出0.207 nm/m的曲率灵敏度以及很强的弯曲方向辨别能力。曲率大小和取向角可以通过两个非对角外芯FPI中的凹陷波长偏移来重建。九对随机选择的弯曲大小和方向的重建结果表明,大小的平均相对误差约为4.5%,取向角的平均绝对误差小于2.0°。此外,所提出的弯曲传感器对温度不敏感,温度灵敏度低于10 pm/°C。该器件的制造简单、干涉可见度高、结构紧凑以及对温度不敏感可能会加速基于MCF的FPI应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b28/11680038/9a3e03515858/micromachines-15-01406-g001.jpg

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