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Compensation of frequency split by directional lapping in fused quartz micro wineglass resonators

机译:融合石英微葡萄酒杯谐振器的定向研磨频率分裂补偿

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摘要

We present, for the first time, a permanent structural asymmetry compensation method for fused quartz micro wineglass resonators. Using the technique, we demonstrated a near six times reduction of structural asymmetry (n = 2 wineglass mode), culminating in reduction of the frequency split from 41 to 7 Hz. This is an iterative process. In each iteration, the structural asymmetry was first identified by measuring the mode shape of the resonators. Then, directional lapping was performed with specially designed lapping fixtures to accurately control the lapping angle down to 1 degrees. Analytical predictions and numerical simulations were conducted to study the structural asymmetry phenomenon and the effects of compensation on the quality factor of the structure, showing the ability of this process to reduce the structural asymmetry, while not affecting the overall quality factor of the resonators.
机译:我们首次出现永久性结构不对称补偿方法,用于融合石英微葡萄酒杯谐振器。 使用该技术,我们证明了结构不对称(n = 2葡萄酒玻璃模式)的近六次,最终减少了41至7Hz的频率分裂。 这是一个迭代过程。 在每次迭代中,首先通过测量谐振器的模式形状来识别结构不对称性。 然后,使用专门设计的研磨夹具进行定向研磨,以准确地控制拍摄角度下降到1度。 进行分析预测和数值模拟,以研究结构不对称现象和补偿对结构质量因子的影响,显示该方法减少结构不对称的能力,同时不会影响谐振器的整体质量因子。

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