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Isotropic band gaps, optical cavities, and freeform waveguides in hyperuniform disordered photonic solids

机译:超均匀无序光子固体中的各向同性带隙,光腔和自由形式的波导

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Hyperuniform disordered solids are a new class of designer photonic materials with large isotropic band gaps comparable to those found in photonic crystals. The hyperuniform disordered materials are statistically isotropic and possess a controllable constrained randomness. We have employed their unique properties to introduce novel architectures for optical cavities that achieve an ultimate isotropic confinement of radiation, and waveguides with arbitrary bending angles. Our experiments demonstrate low-loss waveguiding in submicron scale Si-based hyperuniform structures operating at infrared wavelengths and open the way for the realization of highly flexible, disorder-insensitive optical micro-circuit platforms.
机译:超均匀无序固体是一类新型的设计光子材料,其各向同性带隙与光子晶体中的带隙相当。超均匀无序材料在统计上是各向同性的,并具有可控的受限随机性。我们已经利用它们的独特性能为光腔引入了新颖的架构,从而实现了辐射的最终各向同性限制,以及具有任意弯曲角度的波导。我们的实验证明了在亚微米级,基于硅的超均匀结构中以红外波长工作的低损耗波导,并为实现高度灵活,对杂乱不敏感的光学微电路平台开辟了道路。

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