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基于回音壁模式微谐振器中模式分裂的角速率传感中的克尔噪声分析

Analysis of Kerr Noise in Angular-Rate Sensing Based on Mode Splitting in a Whispering-Gallery-Mode Microresonator.

作者信息

Yang Zhaohua, Li Dan, Sun Yuzhe

机构信息

School of Instrumentation Science and Opto-electronics Engineering, Beihang University, Beijing 100083, China.

出版信息

Micromachines (Basel). 2019 Feb 23;10(2):150. doi: 10.3390/mi10020150.

Abstract

Whispering-gallery-mode (WGM) microresonators have shown their potential in high-precision gyroscopes because of their small volume and high-quality factors. However, Kerr noise can always be the limit of accuracy. Angular-rate sensing based on mode splitting treats backscattering as a measured signal, which can induce mode splitting, while it is considered as a main source of noise in conventional resonator optical gyroscopes. Meanwhile, mode splitting also provides superior noise suppression owing to its self-reference scheme. Kerr noise in this scheme has not been defined and solved yet. Here, the mechanism of the Kerr noise in the measurement is analyzed and the mathematical expressions are derived, indicating the relationship between the Kerr noise and the output of the system. The influence caused by Kerr noise on the output is simulated and discussed. Simulations show that the deviation of the splitting caused by Kerr noise is 1.913 × 10 Hz at an angular rate of 5 × 10⁶ °/s and the corresponding deviation of the angular rate is 9.26 × 10 °/s. It has been proven that angular-rate sensing based on mode splitting offers good suppression of Kerr noise.

摘要

回音壁模式(WGM)微谐振器因其体积小、品质因数高,已在高精度陀螺仪中展现出潜力。然而,克尔噪声始终可能成为精度的限制因素。基于模式分裂的角速率传感将背向散射视为测量信号,这会引发模式分裂,而在传统谐振器光学陀螺仪中,背向散射被视为主要噪声源。与此同时,模式分裂因其自参考方案还具有卓越的噪声抑制能力。该方案中的克尔噪声尚未得到明确界定和解决。在此,分析了测量中克尔噪声的机制并推导了数学表达式,揭示了克尔噪声与系统输出之间的关系。模拟并讨论了克尔噪声对输出的影响。模拟结果表明,在角速率为5×10⁶ °/s时,克尔噪声导致的分裂偏差为1.913×10 Hz,相应的角速率偏差为9.26×10 °/s。已证明基于模式分裂的角速率传感能有效抑制克尔噪声。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0b9/6412468/701493b87e40/micromachines-10-00150-g001.jpg

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