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Dispersion management of anisotropic metamirror for super-octave bandwidth polarization conversion

机译:用于超倍频带宽偏振转换的各向异性元镜的色散管理

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摘要

Dispersion engineering of metamaterials is critical yet not fully released in applications where broadband and multispectral responses are desirable. Here we propose a strategy to circumvent the bandwidth limitation of metamaterials by implementing two-dimensional dispersion engineering in the meta-atoms. Lorentzian resonances are exploited as building blocks in both dimensions of the dedicatedly designed meta-atoms to construct the expected dispersion. We validated this strategy by designing and fabricating an anisotropic metamirror, which can accomplish achromatic polarization transformation in 4-octave bandwidth (two times of previous broadband converters). This work not only paves the way for broadband metamaterials design but also inspire potential applications of dispersion management in nano-photonics.
机译:超材料的分散工程至关重要,但在需要宽带和多光谱响应的应用中尚未完全发布。在这里,我们提出了一种通过在超原子中实施二维分散工程来规避超材料的带宽限制的策略。洛伦兹共振被用作专门设计的亚原子的两个维度的构建基块,以构建预期的色散。我们通过设计和制造各向异性元镜来验证此策略,该元镜可以在4倍频程带宽(是以前的宽带转换器的两倍)中完成消色差偏振转换。这项工作不仅为宽带超材料的设计铺平了道路,而且激发了色散管理在纳米光子学中的潜在应用。

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