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Nano-Optical Couplers for Efficient Power Transmission Along Sharply Bended Nanowires

机译:纳米光耦合器,沿截然弯曲纳米线的高效电力传输

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We consider nano-optical couplers that consist of optimal arrangements of nanoparticles to improve the transmission abilities of nanowire systems with sharp bends. Previously, it was shown that absence/existence of nanoparticles in a given grid can be optimized such that the power transmission can significantly be increased without curving the bend. In this contribution, we present a detailed investigation and analysis of coupler performances to critical geometric parameters. While the designed couplers are robust against fabrication errors, numerical results demonstrate a remarkable dependency of coupler characteristics to particle types, as well as to bending geometry, due to strong plasmonic interactions at short distances. These findings further support the need for case-dependent optimization that must be performed efficiently and accurately via full-wave simulations.
机译:我们认为纳米光耦合器,该纳米光耦合器包括纳米颗粒的最佳布置,以提高纳米线系统的速度弯曲的传动能力。以前,示出了可以优化给定网格中的纳米颗粒的缺失/存在,使得电力传输可以显着增加而不弯曲弯曲。在这一贡献中,我们对临界几何参数进行了详细的调查和分析耦合器性能。虽然设计的耦合器对制造误差稳健,但由于短距离的强等离子体相互作用,数值结果表明耦合器特性与颗粒类型的显着依赖性,以及弯曲几何形状。这些发现进一步支持需要通过全波模拟有效准确地执行依赖依赖优化的需求。

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