Liu Jiaqi, Zhang Chunxi, Gao Fuyu, Song Jingming, Xu Xiaobin, Guo Zhiyu
Opt Express. 2021 Aug 30;29(18):28096-28103. doi: 10.1364/OE.435351.
The polarization extinction ratio (PER) of the multifunction integrated optic circuit (MIOC) is significant in maintaining polarization reciprocity in the fiber-optic gyroscope (FOG), and a high PER value is required, particularly in high-precision FOGs. Practically, the value of the PER decreases owing to the recoupling of the TM mode to the output port, thereby degrading the performance of the FOG. To improve the PER, the propagation of the leaking TM mode in the substrate is analyzed first. The variation of the PER with the chip structure is simulated based on the overlap integral algorithm of the optical mode. According to the analysis results, a structure of double absorption trenches at the bottom of the MIOC is proposed to block the TM mode from reflecting to the output port. In comparison with the traditional design, the optimized MIOC exhibits a higher PER that increases by approximately 25 dB and the average value of the PER reaches 75 dB. The MIOC design proposed in this study has good potential for application in high-precision FOGs.
多功能集成光路(MIOC)的偏振消光比(PER)对于维持光纤陀螺仪(FOG)中的偏振互易性至关重要,并且需要高PER值,特别是在高精度FOG中。实际上,由于TM模式重新耦合到输出端口,PER值会降低,从而降低FOG的性能。为了提高PER,首先分析泄漏TM模式在衬底中的传播。基于光学模式的重叠积分算法模拟了PER随芯片结构的变化。根据分析结果,提出了一种在MIOC底部设置双吸收沟槽的结构,以阻止TM模式反射到输出端口。与传统设计相比,优化后的MIOC具有更高的PER,增加了约25 dB,PER的平均值达到75 dB。本研究中提出的MIOC设计在高精度FOG中具有良好的应用潜力。