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On-Chip Optical Microresonators With High Electro-Optic Tuning Efficiency

机译:具有高电光调谐效率的片上光学微生物器

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摘要

Electro-optic tuning by using lithium niobate (LiNbO3) possesses the unique features of sub-picosecond response time, low power consumption, reduced thermal noise, and combination of nonlinear-optic applications. Here, we demonstrate a new device design and fabrication to realize on-chip electro-optically tunable LiNbO3 microresonators with high performance. This device design solves the problem of cancel-out of effective index variation induced by electro-optic effect in the microresonators made of anisotropic materials. Besides, it enables the device functions of high quality factor, polarization-selective electro-optic tuning, and large free spectral range simultaneously with few high-order modes. The microdisk structure with the air-bridge wiring produced by the standard semiconductor process facilitates the realization of integrated photonic circuits. The presented device achieves the electro-optic tuning rate up to 29.2 pm/V and the large free spectral range of 17.1 nm. The proposed device design offers highly-efficient platforms for nonlinear optics, cavity optomechanics, Kerr frequency comb generation, and cavity quantum electrodynamics.
机译:使用铌酸锂(LINBO3)的电光调节具有亚微微秒响应时间,低功耗,降低热噪声的独特特征,以及非线性光学应用的组合。在这里,我们展示了一种新的器件设计和制造,实现具有高性能的片上电光学调谐的LINBO3微生物。该器件设计解决了通过各向异性材料制成的微谐振器中的电光效应引起的有效指标变化的抵消问题。此外,它使得能够使用少量高阶模式的高质量系数,偏振 - 选择性电光调谐和大型自由谱范围的装置功能。具有由标准半导体工艺产生的空气桥接布线的微仪结构有助于实现集成的光子电路。所提出的装置实现高达29.2 PM / V的电光调谐率和17.1nm的大的自由谱范围。所提出的设备设计为非线性光学,空腔光机械,克尔频率梳状和腔量子电动动力提供了高效的平台。

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