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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Analysis of nonreciprocal noise based on mode splitting in a high-Q optical microresonator
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Analysis of nonreciprocal noise based on mode splitting in a high-Q optical microresonator

机译:基于高Q光学微管中的模式分离的非探测噪声分析

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摘要

The whispering gallery mode optical microresonator offers a high quality factor, which enables it to act as the core component of a high sensitivity resonator optic gyro; however, nonreciprocal noise limits its precision. Considering the Sagnac effect, i.e. mode splitting in high-quality optical micro-resonators, we derive the explicit expression for the angular velocity versus the splitting amount, and verify the sensing mechanism by simulation using finite element method. Remarkably, the accuracy of the angular velocity measurement in the whispering gallery mode optical microresonator with a quality factor of 10(8) is 10(6 degrees)/s. We obtain the optimal coupling position of the novel angular velocity sensing system by detecting the output transmittance spectra of different vertical coupling distances and axial coupling positions. In addition, the reason for the nonreciprocal phenomenon is determined by theoretical analysis of the evanescent distribution of a tapered fiber. These results will provide an effective method and a theoretical basis for suppression of the nonreciprocal noise.
机译:耳语廊道模式光学微谐振器提供高质量因子,使其能够充当高灵敏度谐振器光学陀螺仪的核心组件;然而,非透视噪声限制了其精确度。考虑到SAGNAC效应,即高质量光学微谐振器中的模式分裂,我们导出了角速度与分裂量的显式表达式,并通过使用有限元方法进行仿真验证感测机制。值得注意的是,低语廊道模式光学微管中的角速度测量的精度,具有10(8)的质量因数为10(6度)/ s。通过检测不同垂直耦合距离和轴向耦合位置的输出透射谱法,通过检测到新型角速度感测系统的最佳耦合位置。此外,通过对锥形纤维的渐逝分布的理论分析来确定非探测现象的原因。这些结果将提供有效的方法和抑制非探测噪声的理论依据。

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