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Symmetry breaking in a plasmonic metamaterial

机译:等离子体超材料中的对称性破裂

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We numerically study the optical properties of metal lattices made from periodically arranged plasmonic molecules, i.e., coupled gold nanowire pairs. It is shown that the interaction between the metallic wires, which is directly controlled by the specific lattice geometry, leads to the formation of collective surface plasmon modes. Surface plasmon hybridization is discussed and the direct influence of near- and far-field interaction are highlighted. In particular, it is shown that the common hybridization schema can be reversed by tuning the wire-wire interaction. Moreover, optical activity of higher order modes is demonstrated in case of symmetry breaking. An additional degree of freedom is introduced by inserting a homogeneous metal film, i.e., taking into account wire-image coupling.
机译:我们从数值上研究了由周期性排列的等离激元分子(即耦合的金纳米线对)制成的金属晶格的光学性质。结果表明,金属线之间的相互作用直接受特定晶格几何形状的控制,导致形成集体表面等离激元模态。讨论了表面等离子体激元杂交,并强调了近场和远场相互作用的直接影响。特别地,示出了可以通过调整线-线相互作用来颠倒通用的杂交方案。此外,在对称性破坏的情况下,证明了高阶模的光学活性。通过插入均匀的金属膜,即考虑到线-图像耦合,引入了额外的自由度。

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