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首页> 外文期刊>Physical review letters >Asymmetric Metasurfaces with High-Q Resonances Governed by Bound States in the Continuum
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Asymmetric Metasurfaces with High-Q Resonances Governed by Bound States in the Continuum

机译:受连续态束缚态支配的具有高Q共振的不对称超颖表面

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摘要

We reveal that metasurfaces created by seemingly different lattices of (dielectric or metallic) meta-atoms with broken in-plane symmetry can support sharp high-Q resonances arising from a distortion of symmetry-protected bound states in the continuum. We develop a rigorous theory of such asymmetric periodic structures and demonstrate a link between the bound states in the continuum and Fano resonances. Our results suggest the way for smart engineering of resonances in metasurfaces for many applications in nanophotonics and metaoptics.
机译:我们揭示出,由(介电或金属)亚原子看似不同的晶格(具有破碎的平面内对称性)创建的超表面可以支持由于连续体中受对称保护的结合态的扭曲而引起的尖锐的高Q共振。我们开发了这种不对称周期结构的严格理论,并证明了连续谱中的束缚态与Fano共振之间的联系。我们的结果为在纳米光子学和超光学中的许多应用提出了智能设计超颖表面共振的方法。

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