论文标题

跳动近定位机械共振的回合

Beating ringdowns of near-degenerate mechanical resonances

论文作者

de Jong, Matthijs H. J., Cupertino, Andrea, Shin, Dongil, Gröblacher, Simon, Alijani, Farbod, Steeneken, Peter G., Norte, Richard A.

论文摘要

具有谐波频率关系的耦合模式的机械谐振器由于适用于可控能量传递和非铁质动力学而引发了兴趣。在这里,我们在空间对称微孔子中的高Q因子($> \!\!\!10^4 $)共振之间的耦合在近1:1之间。我们开发并展示了一种基于两个光谱峰的同时和共振检测的方法来分析其动力学行为,并通过实验结果对其进行验证。峰之间的频率差会调节其响声,并在线性衰减中创建BEAT模式。该方法既适用于外部驱动的和布朗运动(热)制度,并允许表征线性和非线性参数。这种方法背后的机制使其广泛适用于光学和电气读数以及不同的机械系统。这将有助于使用近定位机械模式进行研究,例如光学能量转移,同步和陀螺传感器。

Mechanical resonators that possess coupled modes with harmonic frequency relations have recently sparked interest due to their suitability for controllable energy transfer and non-Hermitian dynamics. Here, we show coupling between high Q-factor ($>\!\!10^4$) resonances with a nearly 1:1 frequency relation in spatially-symmetric microresonators. We develop and demonstrate a method to analyze their dynamical behavior based on the simultaneous and resonant detection of both spectral peaks, and validate this with experimental results. The frequency difference between the peaks modulates their ringdown, and creates a beat pattern in the linear decay. This method applies both to the externally driven and the Brownian motion (thermal) regime, and allows characterization of both linear and nonlinear parameters. The mechanism behind this method renders it broadly applicable to both optical and electrical readout, as well as to different mechanical systems. This will aid studies using near-degenerate mechanical modes, for e.g., optomechanical energy transfer, synchronization and gyroscopic sensors.

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