Waveguide integrated reconfigurable all-dielectric metasurfaces

Yihao Cui, B. Gholipour
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Abstract

Recently reconfigurable phase change chalcogenide based metamaterials/metasurfaces have shown great promise in the realization of high speed large contrast all-optical switching and beam-steering devices with built-in memory functionality at a fraction of a wavelength in size across the ultraviolet to infrared frequency range. To incorporate these devices into current telecommunication platforms, integration with photonic waveguide architectures is a must as they present the most mature, widely used commercial photonic device platform today. Here, we present a new class of waveguide-integrated reconfigurable all-dielectric metasurfaces utilizing high refractive index phase change chalcogenides and discuss the unique considerations, design, and physical principles that are essential for integrating such nanostructures into waveguides where illumination is provided through controlled evanescent coupling of guided modes into the metamaterial structure.
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波导集成可重构全介电超表面
最近,基于可重构的相变硫族化物的超材料/超表面在实现高速大对比度全光开关和光束导向器件方面显示出巨大的前景,这些器件具有内置存储功能,其尺寸在紫外到红外频率范围内的波长的一小部分。为了将这些器件集成到当前的电信平台中,必须与光子波导架构集成,因为它们是当今最成熟、应用最广泛的商用光子器件平台。在这里,我们提出了一类利用高折射率相变硫属化物的新型波导集成可重构全介电超表面,并讨论了将这种纳米结构集成到波导中的独特考虑、设计和物理原理,其中通过控制导模的倏逝耦合到超材料结构中来提供照明。
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