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Optonanomechanical self-adaptive photonic devices based on light forces: a path to robust high-index-contrast nanophotonic circuits

机译:基于光力的Optonanom力学自适应光子器件:一种坚固的高折射率对比度纳米光电电路的路径

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We describe a proposed new class of optonanomechanical integrated photonic devices that can have self-adaptive behavior and self-adaptive optical frequency response, through the use of optical forces to manipulate their movable parts. We propose applications for this technology, and show how such devices can address the enormous dimensional and thermal sensitivity present in nanophotonic structures. Through synthesis of the optomechanical potential, we propose to design and control either the effective optical, or the mechanical, properties of the nanostructure, such'as a giant effective optical nonlinear response, nonlinear dynamics and memory. We show device designs that can trap desired states at picometer resolution. We also describe the design of a novel, self-tuning microcavity design whose moving parts adjust in response to light forces alone to always place the resonance at the wavelength of the incident light over a wide wavelength range. This device concept provides an athermal resonator design (temperature-independent resonance frequency), without use of materials with negative thermooptic coefficients. It could also address a major challenge with conventional strong-confinement (high-index-contrast) integrated photonics — their extreme sensitivities — through a self-locking filter bank and optical cross-connect proposal, that in principle can use arbitrarily low power to trim resonant filter passbands to a wavelength channel grid.
机译:我们通过使用光力来描述一种提出的新型Optonom机械集成光子器件,可以具有自适应行为和自适应光学频率响应,以操纵其可移动部件。我们提出了该技术的应用,并展示了这种设备如何应对纳米光调节结构中存在的巨大尺寸和热敏性。通过合成光学力学潜力,我们建议设计和控制纳米结构的有效光学或机械性质,例如巨大的有效光学非线性响应,非线性动力学和记忆。我们展示了可以在Picometer分辨率下捕获所需状态的设备设计。我们还描述了一种新颖的自调整微腔设计的设计,其运动部件响应于单独的光力而调节,以始终将谐振放在入射光的波长在宽波长范围内。该器件概念提供了一种静脉谐振器设计(无关的谐振频率),而无需使用具有负热光系数的材料。它还可以通过传统的强大限制(高指数对比)集成光子 - 它们极端敏感性 - 通过自锁滤波器组和光学交叉建议来解决主要挑战 - 原则上可以使用任意低功率来修剪谐振滤波器通带到波长信道网格。

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