首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A photonic crystal fiber with optimized birefringence-stress stability for fiber optic gyroscope
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A photonic crystal fiber with optimized birefringence-stress stability for fiber optic gyroscope

机译:具有优化的光纤陀螺仪的光子晶体纤维,具有优化的双折射 - 应力稳定性

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摘要

We proposed a novel photonic crystal fiber (PCF) composed of an inner hexagon air-hole lattice and an outer mechanical buffer structure, which could achieve high birefringence-stress stability. The mechanical and light-guiding property of the photonic crystal fiber was theoretically investigated using a full-vector finite element method. By proposing an evaluation method to measure the birefringence variation of the fiber under the radial stress, we demonstrates that the proposed structure could effectively reduce the radial stress-induced birefringence variation by 49.3 %. We further discussed the impact of the mechanical buffer parameters on the modal property as well as thermal conductivity of the fiber. The proposed fiber could find its promising application on the interferometric fiber optic gyroscope.
机译:我们提出了一种由内六角空穴晶格和外部机械缓冲结构组成的新型光子晶体纤维(PCF),其可以实现高双折射应力稳定性。 使用全载有限元法理论上研究了光子晶体纤维的机械和光引导性能。 通过提出在径向应力下测量纤维的双折射变化的评估方法,我们证明了所提出的结构可以有效地将径向应激诱导的双折射变异减少49.3%。 我们进一步讨论了机械缓冲参数对模态性质的影响以及纤维的导热率。 该纤维可以在干涉纤维光学陀螺仪上找到其有希望的应用。

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