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Integrated III-V Photonic Crystal – Si waveguide platform with tailored optomechanical coupling

机译:集成的III-V光子晶体–具有量身定制的光机耦合的Si波导平台

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Optomechanical systems, in which the vibrations of a mechanical resonator are coupled to an electromagnetic radiation, have permitted the investigation of a wealth of novel physical effects. To fully exploit these phenomena in realistic circuits and to achieve different functionalities on a single chip, the integration of optomechanical resonators is mandatory. Here, we propose a novel approach to heterogeneously integrate arrays of two-dimensional photonic crystal defect cavities on top of silicon-on-insulator waveguides. The optomechanical response of these devices is investigated and evidences an optomechanical coupling involving both dispersive and dissipative mechanisms. By controlling the optical coupling between the waveguide and the photonic crystal, we were able to vary and understand the relative strength of these couplings. This scalable platform allows for an unprecedented control on the optomechanical coupling mechanisms, with a potential benefit in cooling experiments, and for the development of multi-element optomechanical circuits in the framework of optomechanically-driven signal-processing applications.
机译:在光机械系统中,机械谐振器的振动与电磁辐射耦合,从而可以研究大量新颖的物理效应。为了在实际电路中充分利用这些现象并在单个芯片上实现不同的功能,必须集成光机械谐振器。在这里,我们提出了一种在绝缘体上硅波导上方异质集成二维光子晶体缺陷腔阵列的新方法。研究了这些设备的光机械响应,并证明了涉及色散和耗散机制的光机械耦合。通过控制波导和光子晶体之间的光学耦合,我们能够改变和理解这些耦合的相对强度。这个可扩展的平台允许对光机耦合机制进行空前的控制,在冷却实验中具有潜在的好处,并且可以在光机驱动信号处理应用的框架内开发多元件光机电路。

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