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Optomechanical and photothermal interactions in suspended photonic crystal membranes

机译:悬浮光子晶体膜中的光机械和光热相互作用

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摘要

We present here an optomechanical system fabricated with novel stress management techniques that allow us to suspend an ultrathin defect-free silicon photonic-crystal membrane above a Silicon-on-Insulator (SOI) substrate with a gap that is tunable to below 200 nm. Our devices are able to generate strong attractive and repulsive optical forces over a large surface area with simple in- and out- coupling and feature the strongest repulsive optomechanical coupling in any geometry to date (g[subscript OM]/2π ≈ −65 GHz/nm). The interplay between the optomechanical and photo-thermal-mechanical dynamics is explored, and the latter is used to achieve cooling and amplification of the mechanical mode, demonstrating that our platform is well-suited for potential applications in low-power mass, force, and refractive-index sensing as well as optomechanical accelerometry.
机译:我们在此介绍一种采用新型应力管理技术制造的光机械系统,该技术使我们能够将超薄无缺陷的硅光子晶体膜悬挂在绝缘体上硅(SOI)衬底上方,并且其间隙可调至200 nm以下。我们的设备能够通过简单的输入和输出耦合在较大的表面积上产生强大的吸引力和排斥力,并且具有迄今为止任何几何形状中最强的排斥光机耦合(g [下​​标OM] /2π≈-65 GHz /纳米)。探索了光机械动力学和光热力学动力学之间的相互作用,后者用于实现冷却和放大机械模式,这表明我们的平台非常适合于低功率质量,力和功率的潜在应用。折射率感应以及光机械加速度计。

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