Zhang Jianjie, Ma Huilian, Li Hanzhao, Jin Zhonghe
Opt Lett. 2017 Sep 15;42(18):3658-3661. doi: 10.1364/OL.42.003658.
A new record for high-finesse silica waveguide ring resonators (WRRs), to the best of our knowledge, is demonstrated experimentally. The achieved finesse and resonant depths of the silica WRR with a length of 7.9 cm and a diameter of 2.5 cm are 196.7% and 98%, respectively. In addition, the silica WRR chip is coupled with single-polarization fiber to improve the polarization extinction ratio (PER) and, thus, to reduce the polarization error. With the application of this high-finesse and high-PER WRR to the resonant micro-optic gyroscope (RMOG), a bias stability of 0.004°/s is observed over a 1 h timeframe. To the best of our knowledge, this is the first RMOG reported in the open literature that can sense the earth's rotation rate (15°/h).
据我们所知,实验展示了高精细度二氧化硅波导环形谐振器(WRR)的一项新纪录。长度为7.9厘米、直径为2.5厘米的二氧化硅WRR所实现的精细度和谐振深度分别为196.7%和98%。此外,二氧化硅WRR芯片与单偏振光纤耦合,以提高偏振消光比(PER),从而减少偏振误差。将这种高精细度和高PER的WRR应用于谐振微光学陀螺仪(RMOG)时,在1小时的时间范围内观察到偏置稳定性为0.004°/秒。据我们所知,这是公开文献中报道的首个能够感知地球自转速率(15°/小时)的RMOG。