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High-frequency and high-quality silicon carbide optomechanical microresonators

机译:高频高质量碳化硅光机械微谐振器

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摘要

Silicon carbide (SiC) exhibits excellent material properties attractive for broad applications. We demonstrate the first SiC optomechanical microresonators that integrate high mechanical frequency, high mechanical quality, and high optical quality into a single device. The radial-breathing mechanical mode has a mechanical frequency up to 1.69 GHz with a mechanical Q around 5500 in atmosphere, which corresponds to a fm?·?Qm product as high as 9.47?×?1012?Hz. The strong optomechanical coupling allows us to efficiently excite and probe the coherent mechanical oscillation by optical waves. The demonstrated devices, in combination with the superior thermal property, chemical inertness, and defect characteristics of SiC, show great potential for applications in metrology, sensing, and quantum photonics, particularly in harsh environments that are challenging for other device platforms.
机译:碳化硅(SiC)具有出色的材料性能,对广泛的应用具有吸引力。我们展示了首款将高机械频率,高机械质量和高光学质量集成到单个设备中的SiC光学机械微谐振器。径向呼吸机械模式的机械频率高达1.69 GHz,在大气中的机械Q值约为5500,相当于af m ?·?Q m 乘积高。为9.47××10 12 ?Hz。强大的光机耦合使我们能够有效地激发和探测光波引起的相干机械振荡。所展示的器件结合了SiC的出色热性能,化学惰性和缺陷特性,显示出在计量,传感和量子光子学中的应用潜力,特别是在对其他器件平台具有挑战性的恶劣环境中。

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