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High-mechanical-frequency characteristics of optomechanical crystal cavity with coupling waveguide

机译:带耦合波导的光机械晶体腔的高机械频率特性

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摘要

Optomechanical crystals have attracted great attention recently for their ability to realize strong photon-phonon interaction in cavity optomechanical systems. By far, the operation of cavity optomechanical systems with high mechanical frequency has to employ tapered fibres or one-sided waveguides with circulators to couple the light into and out of the cavities, which hinders their on-chip applications. Here, we demonstrate larger-centre-hole nanobeam structures with on-chip transmission-coupling waveguide. The measured mechanical frequency is up to 4.47 GHz, with a high mechanical Q-factor of 1.4 × 103 in the ambient environment. The corresponding optomechanical coupling rate is calculated and measured to be 836 kHz and 1.2 MHz, respectively, while the effective mass is estimated to be 136 fg. With the transmission waveguide coupled structure and a small footprint of 3.4 μm2, this simple cavity can be directly used as functional components or integrated with other on-chip devices in future practical applications.
机译:近来,光机械晶体由于能够在腔体光机械系统中实现强大的光子-声子相互作用而备受关注。到目前为止,具有高机械频率的腔室光机械系统的操作必须采用锥形光纤或带环行器的单侧波导,以将光耦合进出腔,这阻碍了它们在芯片上的应用。在这里,我们演示了具有片上传输耦合波导的大孔纳米束结构。测得的机械频率高达4.47 GHz,在周围环境中的机械Q因子高达1.4×10 3 。计算出相应的光机耦合速率,并测得分别为836 kHz和1.2 MHz,而有效质量估计为136 fg。由于具有传输波导耦合结构和3.4μm 2 的小尺寸,因此这种简单的腔体可以直接用作功能组件,或者在将来的实际应用中与其他片上器件集成。

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