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Polarimetric fiber laser sensor for hydrostatic pressure

机译:用于静水压力的偏振光纤激光传感器

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摘要

A polarimetric Fabry-Perot fiber laser sensor for fluid pressure up to 100 MPa is investigated. The fluid acts on one of two elliptical-core fiber sections in the laser cavity, producing a shift in the differential phase of the two orthogonal polarization modes and thus a variation in the beat frequencies of the corresponding longitudinal laser modes. The second fiber section, with a 90° offset in the core orientation, compensates for temperature-induced phase shifts. The dispersion in the birefringent fiber Bragg grating reflectors is employed to remove the near degeneracy of the polarization mode beat frequencies of a given order and to improve substantially the resolution of the sensor to a few parts in 10~(6) of the free spectral range. Further investigations address the effect of the fluid on the integrity of the fiber, the influence of various fiber coatings on the sensor response, and the intrinsic stability of erbium-doped and undoped sensing fibers under fluid pressure.
机译:研究了用于流体压力高达100 MPa的偏振Fabry-Perot光纤激光传感器。流体作用在激光腔中的两个椭圆纤芯光纤部分之一上,从而在两个正交偏振模的微分相位中产生位移,从而在相应的纵向激光模的拍频中产生变化。第二个光纤段的纤芯方向偏移了90°,可补偿温度引起的相移。使用双折射光纤布拉格光栅反射器中的色散可以消除给定阶数的偏振模差拍频率的近简并把传感器的分辨率提高到自由光谱范围的10〜(6)的几分之一。进一步的研究涉及流体对纤维完整性的影响,各种纤维涂层对传感器响应的影响以及在流体压力下掺and和不掺sensing传感光纤的固有稳定性。

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