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Waves along chains of nanopores in noble metals

机译:沿着贵金属的纳米孔链的波浪

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In recent years a lot of attention has been paid to metal nanoscale structures because of new phenomena and potential applications in waveguide and antenna techniques. Especially in the optical region new effects arise based on plasmon resonances. It is known that in the optical region some noble metals behave like free-electron plasma with low losses. In this study field propagation in nanoporous metal structures is considered. We consider propagation in regular arrays of pores in metal in the presence of an interface. Although the field is decaying outside the pores, these inclusions are so close to each other that there is interaction with the neighboring pores. In addition the metal-insulator interface causes coupling. Near the plasmonic resonance these interactions are strong enough, and there exist guided wave modes along the array. Properties of these modes are investigated. The allowed frequency range where the guided modes exist depends on the geometry, i.e., on the size of the pores and on the distance between them. In such structures there exist three propagating modes, two transversely and one longitudinally polarized. The transversely polarized fields propagate as forward waves and the longitudinally polarized fields form a backward wave. When the chain of pores is far from the interface, the two transversely polarized modes become decoupled and have the same dispersion due to degeneracy.
机译:由于波导和天线技术中的新现象和潜在应用,近年来,已经支付了许多关注金属纳米级结构。特别是在光学区域中产生的新效果基于等离子体共振。众所周知,在光学区域中,一些贵金属的表现得像油血浆,低损耗。在该研究中,考虑了纳米多孔金属结构中的传播。我们考虑在界面存在下在金属中的常规孔阵列中的传播。虽然该领域在孔隙外衰减,但是这些夹杂物彼此如此接近,使得与邻近孔隙相互作用。此外,金属绝缘体接口导致耦合。在等离子体共振附近这些相互作用足够强,并且沿着阵列存在引导波模式。研究了这些模式的性质。引导模式存在的允许频率范围取决于几何形状,即孔的大小以及它们之间的距离。在这样的结构中,存在三种传播模式,横向和一个纵向极化。横向偏振的场作为前向波传播,并且纵向偏振的场形成后向波。当孔链远离界面时,两个横向极化模式变得分离并具有由于退化而具有相同的色散。

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