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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Design of highly transmissive all-dielectric metasurface based on silicon nanodisks
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Design of highly transmissive all-dielectric metasurface based on silicon nanodisks

机译:基于硅纳米发布的高透射全介质元表面设计

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Using the developed discrete dipole approximation method, we investigate the behavior of silicon nanodisks acting as Huygens sources. First, we study the correlation between the radius of a silicon nanodisk and its electric resonance and also between the height of a nanodisk and its magnetic resonance and find a significant correlation between them. Then, we investigate the transmission of an array of silicon nanodisks. Using the overlap between the electric and magnetic resonances, we obtain a nearly perfect impedance match between the environment and silicon nanodisk array. We achieve a transmission above 99% over the entire phase range of 0-2 pi radians at the wavelength of 1190 nm. Our results can be extended to microwave, terahertz and optical frequencies and be used to design metasurfaces for different applications such as beam shaping lenses, beam deflectors and holograms.
机译:使用开发的离散偶极逼近方法,研究了硅纳米发作作为Huygens来源的行为。 首先,我们研究了硅纳米型磁盘的半径与其电谐振之间的相关性,以及纳米型磁盘的高度及其磁共振,并在它们之间找到显着的相关性。 然后,我们研究了硅纳多阵列的传输。 使用电磁共振之间的重叠,我们在环境和硅纳米磁盘阵列之间获得几乎完美的阻抗匹配。 在波长为1190nm的波长的整个相位范围内,我们在整个相范围内实现99%以上的变速器。 我们的结果可以扩展到微波炉,太赫兹和光学频率,并用于设计用于不同应用的元件,例如光束整形透镜,梁偏转器和全息图。

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