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Wave manipulation with designer dielectric metasurfaces

机译:使用设计师的介电超表面来操纵波

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The concept of an ultra-thin metasurface made of single layer of only-dielectric disks for successful phase control over a full range is demonstrated. Conduction loss is avoided compared to its plasmonic counterpart. The interaction of the Mie resonances of the first two modes of the dielectric particles, magnetic and electric dipoles, is tailored by the dimensions of the disks, providing required phase shift for the transmitted beam from 0° to 360°, together with high transmission efficiency. The successful performance of a beam-tilting array and a large-scale lens functioning at 195 THz demonstrates the ability of the dielectric metasurface that is thin and has also high efficiency of more than 80%. Such configurations can serve as outstanding alternatives for plasmonic metasurfaces especially that it can be a scalable design.
机译:演示了由单层仅电介质磁盘制成的超薄超颖表面的概念,可在整个范围内成功进行相位控制。与等离子相比,避免了传导损耗。介电粒子的前两种模式的磁和电偶极子的Mie共振的相互作用是通过圆盘的尺寸定制的,从而为从0°到360°的透射光束提供了所需的相移,并具有很高的传输效率。光束倾斜阵列和在195 THz下工作的大型透镜的成功性能证明了介电超薄表面的能力,该介电薄层的效率也超过80%。这样的配置可以用作等离子超颖表面的出色替代方案,尤其是它可以是可扩展的设计。

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