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Temperature Stability of a Hybrid Polarization-Maintaining Photonic Crystal Fiber Resonator and Its Application in a Resonant Fiber Optic Gyro

机译:保偏混合光子晶体光纤谐振器的温度稳定性及其在谐振光纤陀螺中的应用

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摘要

A fiber ring resonator (FRR) constructed using a Panda polarization-maintaining fiber does not effectively solve the problem of temperature-related polarization fluctuation, which considerably limits the detection accuracy of the resonant fiber optic gyro. The polarization-maintaining photonic crystal fiber (PM-PCF) can improve the thermal stability of the FRR. In this study, a structure that can simultaneously detect the polarization fluctuation of two FRRs is designed. We analyzed and verified the polarization phase shift errors of these two types of fibers, which are caused by the thermally induced birefringence changes. Theoretical simulation and experimental results confirm that a PM-PCF can be used to optimize the FRR, which can effectively suppress the polarization fluctuation.
机译:使用熊猫偏振保持光纤构造的光纤环形谐振器(FRR)不能有效地解决与温度相关的偏振波动的问题,这极大地限制了谐振光纤陀螺的检测精度。保偏光子晶体光纤(PM-PCF)可以提高FRR的热稳定性。在这项研究中,设计了一种可以同时检测两个FRR极化波动的结构。我们分析并验证了这两种类型光纤的偏振相移误差,这是由热诱导的双折射变化引起的。理论仿真和实验结果证实,可以使用PM-PCF来优化FRR,从而可以有效地抑制极化波动。

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