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Three-dimensional nanotransmission lines at optical frequencies: A recipe for broadband negative-refraction optical metamaterials

机译:光学频率下的三维纳米传输线:宽带负折射光学超材料的配方

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摘要

We apply the optical nanocircuit concepts to design and analyze in detail a three-dimensional (3D) plas-monic nanotransmission line network that may act as a relatively broadband negative-refraction metamaterial at infrared and optical frequencies. After discussing the heuristic concepts in our theory, we show full-wave analytical results of the expected behavior of such materials, which show increased bandwidth and relative robustness to losses. The possibility and constraints of getting a 3D fully isotropic response are also explored and conditions for minimal losses and increased bandwidth are discussed. Full-wave analytical results for some design examples employing realistic plasmonic materials at infrared and optical frequencies are also presented, and the case of a subwavelength imaging system using a slab of this material is numerically investigated.
机译:我们应用光学纳米电路的概念来详细设计和分析三维(3D)等离子体-纳米线传输网络,该网络在红外和光学频率下可作为相对宽带的负折射超材料。在讨论了我们理论中的启发式概念之后,我们展示了此类材料的预期行为的全波分析结果,这些结果显示出带宽的增加和对损耗的相对鲁棒性。还探讨了获得3D完全各向同性响应的可能性和约束,并讨论了最小损耗和增加带宽的条件。还给出了在红外和光学频率下采用实际等离激元材料的一些设计实例的全波分析结果,并对使用该材料平板的亚波长成像系统的情况进行了数值研究。

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