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Optical Spring Effect in Micro-Bubble Resonators and Its Application for the Effective Mass Measurement of Optomechanical Resonant Mode

机译:微泡谐振器中的光学弹簧效应及其在光机械谐振模的有效质量测量中的应用

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摘要

In this work, we present a novel approach for obtaining the effective mass of mechanical vibration mode in micro-bubble resonators (MBRs). To be specific, the effective mass is deduced from the measurement of optical spring effect (OSE) in MBRs. This approach is demonstrated and applied to analyze the effective mass of hollow MBRs and liquid-filled MBRs, respectively. It is found that the liquid-filled MBRs has significantly stronger OSE and a less effective mass than hollow MBRs, both of the extraordinary behaviors can be beneficial for applications such as mass sensing. Larger OSE from higher order harmonics of the mechanical modes is also observed. Our work paves a way towards the developing of OSE-based high sensitive mass sensor in MBRs.
机译:在这项工作中,我们提出了一种新颖的方法来获得微泡谐振器(MBR)中机械振动模式的有效质量。具体而言,有效质量是根据MBR中的光学弹簧效应(OSE)的测量得出的。演示了该方法并将其应用于分析中空MBR和液体填充MBR的有效质量。已发现,与中空MBR相比,液体填充的MBR具有明显更强的OSE和更低的质量,这两种非凡的行为对于诸如质量传感之类的应用可能都是有益的。还观察到机械模式的高次谐波产生的较大OSE。我们的工作为在MBR中开发基于OSE的高灵敏度质量传感器铺平了道路。

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