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Split-mode fiber Bragg grating sensor for high-resolution static strain measurements

机译:分模光纤布拉格光栅传感器,用于高分辨率静态应变测量

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摘要

We demonstrate a strain sensor with very high sensitivity in the static and low frequency regime based on a fiber ring cavity that includes a p phase-shifted fiber Bragg grating. The grating acts as a partial reflector that couples the two counter-propagating cavity modes, generating a splitting of the resonant frequencies. The presence of a sharp transition within the p phase-shifted fiber Bragg grating's spectral transmittance makes this frequency splitting extremely sensitive to length, temperature, and the refractive index of the fiber in the region where the grating is written. The splitting variations caused by small mechanical deformations of the grating are tracked in real time by interrogating a cavity resonance with a locked-carrier scanning-sideband technique. The measurable strain range and bandwidth are characterized, and a resolution of 320 p is an element of/Hz(1/2) at 0 Hz is experimentally demonstrated, the highest achieved to date with a fiber Bragg grating sensor. (C) 2014 Optical Society of America
机译:我们展示了一种基于光纤环腔的应变传感器,该传感器在静态和低频范围内具有很高的灵敏度,该光纤环腔包括一个p相移光纤布拉格光栅。光栅充当耦合两个反向传播的腔模式的局部反射器,从而产生谐振频率的分裂。在p相移光纤布拉格光栅的光谱透射率中存在一个陡峭的跃迁,这使得分频对写入光栅的区域中的光纤的长度,温度和折射率极为敏感。通过使用锁定载波扫描边带技术询问腔共振,可以实时跟踪由光栅的较小机械变形引起的分裂变化。表征了可测量的应变范围和带宽,并通过实验证明了在0 Hz时320 p的分辨率是/ Hz(1/2)的一个元素,这是迄今为止使用光纤布拉格光栅传感器实现的最高分辨率。 (C)2014年美国眼镜学会

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