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Topological Transition Metasurfaces for Manipulating Terahertz Surface Wave Propagation

机译:用于操纵Terahertz表面波传播的拓扑过渡元件

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Metasurfaces refer to planarized ultrathin metamaterials which promise an effective approach to control not only waves in the free space but also surface plasmon polaritons (SPPs) which is an attractive form of electromagnetic waves propagating along the interface between typical metals and dielectrics. Topological transition metasurfaces have emerged as a fascinating platform to control SPPs. In this work, we propose topological transition metasurfaces for achieving anomalous terahertz surface wave propagation. Combining different complementary H-shape resonators, we observe anomalous wave propagation at the interface where eigenmode of the resonator experiences topological transition. The proposed metasurfaces open unprecedented venues for anomalous surface wave propagation and guidance which show great capabilities for designing photonic devices.
机译:Metasurfaces参考平坦化的超超材料,这承诺不仅控制自由空间中的有效方法,而且还有表面等离子体(SPP),其是沿着典型金属和电介质之间的界面传播的有吸引力的电磁波形式。拓扑过渡元件已成为控制SPP的迷人平台。在这项工作中,我们提出了实现异常太赫兹表面波传播的拓扑过渡元件。组合不同的互补H形谐振器,我们观察谐振器的特征模型的界面处的异常波传播。拟议的元措施开辟了前所未有的场所,用于异常表面波传播和指导,其表现出设计光子器件的巨大能力。

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