Liu Shuang, Lin Yi, Jin Xiaojun, Ma Huilian, Jin Zhonghe
Appl Opt. 2022 May 20;61(15):4287-4295. doi: 10.1364/AO.457490.
The waveguide-type ring resonator (WRR) is the key rotation-sensing element in a resonant micro-optic gyroscope (RMOG). A universal model used to analyze both the polarization characteristics of the WRR and corresponding temperature-related polarization error in the RMOG is presented. It indicates that the polarization problem stems from the excitation of two polarization states within the WRR. Unequal variations of incident lights on the cavity in the two directions can cause bias errors at the RMOG output. With the application of different silica WRRs to the RMOG, the polarization errors are tested and verify the theoretical results. Finally, a segment of tilted waveguide gratings with Brewster's angle is fabricated on the silica waveguide within the cavity. The measured polarization extinction ratio of the output light from the WRR is as high as 35.2 dB. The corresponding temperature dependence of the polarization error is theoretically reduced to 0.0019 (°/s)/°C, which indicates that temperature control is sufficient for a tactical grade RMOG.
波导型环形谐振器(WRR)是谐振微光学陀螺仪(RMOG)中的关键旋转传感元件。本文提出了一个通用模型,用于分析WRR的偏振特性以及RMOG中相应的与温度相关的偏振误差。结果表明,偏振问题源于WRR内两种偏振态的激发。腔内两个方向上入射光的不均匀变化会在RMOG输出端引起偏置误差。通过将不同的二氧化硅WRR应用于RMOG,对偏振误差进行了测试并验证了理论结果。最后,在腔内的二氧化硅波导上制作了一段具有布儒斯特角的倾斜波导光栅。测得的WRR输出光的偏振消光比高达35.2 dB。理论上,偏振误差的相应温度依赖性降低到0.0019(°/s)/°C,这表明对于战术级RMOG来说,温度控制是足够的。