Wang Zhuo, Wang Guochen, Wang Zicheng, Gao Wei, Cheng Yu
Opt Lett. 2021 Jul 1;46(13):3191-3194. doi: 10.1364/OL.431065.
Resonant fiber optic gyros (RFOGs) generally use fiber ring resonator propagating linearly polarized light, so it is inevitably affected by coherent optical noises between two counterpropagation beams such as nonlinear effect and backscattering noise. So, we propose the incoherent suppression method of optical noises in a RFOG based on the circularly state of polarization (CSOP) light. The spun-fiber is used to fabricate a resonator that can realize the reciprocal transmission of CSOP light for the first time, and the highly reciprocal signal processing scheme is applied in RFOG based on the Faraday effect. We demonstrate that the designed resonator realizes orthogonal separation of backscattered light thereby suppressing the backscattering noise, and we confirm that the reciprocal CSOP light can greatly reduce the nonlinear effect due to incoherence. With the closed-loop method based on the Faraday effect and spun-fiber resonator, whose finesse is 6.6 with a length of 11-meter spun-fiber and 6-meter single-polarization fiber, the long-term stability and short-term stability of a RFOG have been greatly improved. The incoherence method based on a reciprocal CSOP light propagation mechanism has great potential in the suppression of coherence optical noises in a RFOG, which provides a new, to the best of our knowledge, idea to solve the problem.
谐振式光纤陀螺(RFOG)通常使用传播线偏振光的光纤环形谐振器,因此不可避免地会受到两束反向传播光束之间的相干光学噪声影响,如非线性效应和背向散射噪声。所以,我们提出了一种基于圆偏振态(CSOP)光的RFOG中光学噪声的非相干抑制方法。首次使用旋转光纤制造出能够实现CSOP光双向传输的谐振器,并将高度互易的信号处理方案应用于基于法拉第效应的RFOG中。我们证明了所设计的谐振器实现了背向散射光的正交分离,从而抑制了背向散射噪声,并且我们证实了互易的CSOP光由于非相干性可以大大降低非线性效应。采用基于法拉第效应和旋转光纤谐振器的闭环方法,该谐振器由长度为11米的旋转光纤和6米的单偏振光纤组成,精细度为6.6,RFOG的长期稳定性和短期稳定性都得到了极大提高。基于互易CSOP光传播机制的非相干方法在抑制RFOG中的相干光学噪声方面具有巨大潜力,据我们所知,这为解决该问题提供了一种新的思路。