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Adaptable Optical Fiber Displacement-Curvature Sensor Based on a Modal Michelson Interferometer with a Tapered Single Mode Fiber

机译:基于带锥形单模光纤的模态迈克尔逊干涉仪的自适应光纤位移-曲率传感器

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摘要

A compact, highly sensitive optical fiber displacement and curvature radius sensor is presented. The device consists of an adiabatic bi-conical fused fiber taper spliced to a single-mode fiber (SMF) segment with a flat face end. The bi-conical taper structure acts as a modal coupling device between core and cladding modes for the SMF segment. When the bi-conical taper is bent by an axial displacement, the symmetrical bi-conical shape of the tapered structure is stressed, causing a change in the refractive index profile which becomes asymmetric. As a result, the taper adiabaticity is lost, and interference between modes appears. As the bending increases, a small change in the fringe visibility and a wavelength shift on the periodical reflection spectrum of the in-fiber interferometer is produced. The displacement sensitivity and the spectral periodicity of the device can be adjusted by the proper selection of the SMF length. Sensitivities from around 1.93 to 3.4 nm/mm were obtained for SMF length between 7.5 and 12.5 cm. Both sensor interrogations, wavelength shift and visibility contrast, can be used to measure displacement and curvature radius magnitudes.
机译:提出了一种紧凑,高度灵敏的光纤位移和曲率半径传感器。该设备由一个绝热的双锥熔融光纤锥组成,该锥锥接合到具有平坦端面的单模光纤(SMF)段上。双圆锥锥形结构充当SMF段纤芯和包层模式之间的模态耦合装置。当双锥形锥通过轴向位移而弯曲时,锥形结构的对称双锥形形状受到应力,导致折射率分布的变化变得不对称。结果,锥度绝热损失,并且模式之间出现干涉。随着弯曲的增加,条纹可见度的微小变化和光纤内干涉仪的周期性反射光谱上的波长偏移会产生。可以通过适当选择SMF长度来调整设备的位移灵敏度和光谱周期性。 SMF长度在7.5至12.5 cm之间时,灵敏度约为1.93至3.4 nm / mm。传感器询问,波长偏移和可见度对比度均可用于测量位移和曲率半径大小。

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