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Self-Similarity of Plasmon Edge Modes on Koch Fractal Antennas

机译:在Koch分形天线上的等离子体边缘模式的自相似性

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We investigate the plasmonic behavior of Koch snowflake fractal geometries and their possible application as broadband optical antennas. Lithographically defined planar silver Koch fractal antennas were fabricated and characterized with high spatial and spectral resolution using electron energy loss spectroscopy. The experimental data are supported by numerical calculations carried out with a surface integral equation method. Multiple surface plasmon edge modes supported by the fractal structures have been imaged and analyzed. Furthermore, by isolating and reproducing self-similar features in long silver strip antennas, the edge modes present in the Koch snowflake fractals are identified. We demonstrate that the fractal response can be obtained by the sum of basic self-similar segments called characteristic edge units. Interestingly, the plasmon edge modes follow a fractal-scaling rule that depends on these self-similar segments formed in the structure after a fractal iteration. As the size of a fractal structure is reduced, coupling of the modes in the characteristic edge units becomes relevant, and the symmetry of the fractal affects the formation of hybrid modes. This analysis can be utilized not only to understand the edge modes in other planar structures but also in the design and fabrication of fractal structures for nanophotonic applications.
机译:我们研究了Koch雪花分形几何形状的等离子体行为及其作为宽带光天线的可能应用。使用电子能损光谱法制造光刻定义的平面银色koch分形天线和特征,具有高空间和光谱分辨率。通过用表面整体式方法执行的数值计算来支持实验数据。由分形结构支撑的多种表面等离子体边缘模式已经成像并分析。此外,通过在长银条天线中隔离和再现自相似的特征,识别在Koch雪花分切屑中存在的边缘模式。我们证明了分形响应可以通过称为特征边缘单元的基本自我类似段的总和获得。有趣的是,等离子体边缘模式遵循分形缩放规则,其取决于分形迭代后结构中形成的这些自我相似的段。随着分形结构的尺寸减小,特征边缘单元中的模式的耦合变得相关,并且分形对称性影响了混合模式的形成。该分析不仅可以用于了解其他平面结构中的边缘模式,而且可以用于纳米光电应用的分形结构的设计和制造中。

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