论文标题

毫米级楔形陀螺仪中相匹配和SAGNAC效应的实验证明

Experimental demonstration of phase-matching and Sagnac effect in a millimeter-scale wedged resonator gyroscope

论文作者

Mao, Xuan, Yang, Hong, Long, Dan, Wang, Min, Wen, Peng-Yu, Hu, Yun-Qi, Wang, Bo-Yang, Li, Gui-Qin, Gao, Jian-Cun, Long, Gui-Lu

论文摘要

从常规光学组件到光学模式的光效率高效的耦合在于基于芯片的微设备的心脏,这取决于纤维锥度的传播常数与谐波锥模模式(WGM)之间的相匹配确定。光学陀螺仪通常是光纤陀螺仪和环形陀螺仪,一直是定位和惯性传感等多种应用中的中流速。在这里,理论上分析了相匹配和实验验证。我们观察到毫米级楔形谐波仪的Sagnac效应,该陀螺仪吸引了相当大的关注,并在近年来得到了迅速促进。我们展示了双向泵和探针方案,该方案直接测量了由SAGNAC效应引起的频率BEAT。我们在检测到的BEAT频率和旋转速度之间建立线性响应。顺时针和逆时针旋转也可以根据频率拍打的值进行区分。实验结果验证了在WGM谐振系统中开发陀螺仪的可行性,并为未来的开发铺平了道路。

The highly efficient coupling of light from conventional optical components to optical mode volumes lies in the heart of chip-based micro-devices, which is determined by the phase-matching between propagation constants of fiber taper and the whispering-gallery-mode (WGM) of the resonator. Optical gyroscopes, typically realized as fiber-optic gyroscopes and ring-laser gyroscopes, have been the mainstay in diverse applications such as positioning and inertial sensing. Here, the phase-matching is theoretically analyzed and experimentally verified. We observe Sagnac effect in a millimeter-scale wedged resonator gyroscope which has attracted considerable attention and been rapidly promoted in recent years. We demonstrate a bidirectional pump and probe scheme, which directly measures the frequency beat caused by the Sagnac effect. We establish the linear response between the detected beat frequency and the rotation velocity. The clockwise and counterclockwise rotation can also be distinguished according to the value of the frequency beat. The experimental results verify the feasibility of developing gyroscope in WGM resonator system and pave the way for future development.

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