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Forced and self-excited oscillations of an optomechanical cavity

机译:光机械腔的强迫和自激振荡

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摘要

We experimentally study forced and self-excited oscillations of an optomechanical cavity, which is formed between a fiber Bragg grating that serves as a static mirror and a freely suspended metallic mechanical resonator that serves as a moving mirror. In the domain of small amplitude mechanical oscillations, we find that the optomechanical coupling is manifested as changes in the effective resonance frequency, damping rate, and cubic nonlinearity of the mechanical resonator. Moreover, self-excited oscillations of the micromechanical mirror are observed above a certain optical power threshold. A comparison between the experimental results and a theoretical model that we have recently derived and analyzed yields a good agreement. The comparison also indicates that the dominant optomechanical coupling mechanism is the heating of the metallic mirror due to optical absorption.
机译:我们通过实验研究了光机械腔的强制和自激振荡,该光机械腔在用作静态镜的光纤布拉格光栅与用作移动镜的自由悬挂金属机械谐振器之间形成。在小振幅机械振荡的领域,我们发现光机械耦合表现为机械共振器的有效共振频率,阻尼率和立方非线性的变化。此外,在一定光功率阈值以上观察到微机械镜的自激振荡。实验结果与我们最近得出并分析的理论模型之间的比较得出了很好的共识。该比较还表明,主要的光机械耦合机制是由于光吸收引起的金属镜的加热。

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