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Chapter 9 Planar Hybrid Plasmonic-Photonic Crystals

机译:第9章平面混合等离子体 - 光子晶体

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The invention of hybrid crystals brought about the simultaneous usage of different mechanisms of light transfer into effect in one and the same architecture. We have discussed the preparation, structure and optical properties of planar hybrid metal-dielectric crystals, light in which is carried by photons and plasmons. Studied hybrids are based on the monolayers of spheres - the planar hexagonal packages of colloidal beads on a substrate. Two basic modifications, the monolayer on a flat metal film and the corrugated metal film on the monolayer have been prepared. Owing to their topology, hybrid crystals respond to the incident light depending on the wavelength, the polarization and the propagation direction with different optical resonances. The respective resonances are the light diffraction in the planar lattice, the diffraction of surface plasmon polaritons in the periodically profiled film, the localized particle and cavity plasmons in metal semishells and Fabry-Perot oscillations. Besides, interpenetration of plasmonic and photonic crystals results in the efficient hybridization of photonic and plasmonic modes. Overlay of different resonances leads to their further modification described by Fano process. The apparent complexity of the optical properties is paired by their broad variability either by means of tuning the topology and composition of hybrids or through external stimuli. The simple and inexpensive technology in combination with very rich physics ensures the attractiveness of hybrid crystals for fundamental research and practical applications.
机译:杂交晶体的发明带来了一种同时使用光学传递的不同机制在一个和相同的架构中。我们已经讨论了平面混合金属介电晶体的制备,结构和光学性质,由光子和等离子体携带的光。研究的杂种基于球体的单层 - 基板上的胶体珠粒的平面六方包。两种基本修饰,制备了扁平金属薄膜上的单层和单层上的波纹金属膜。由于它们的拓扑结构,混合晶体根据具有不同光学谐振的波长,极化和传播方向响应入射光。相应的共振是平面晶格中的光衍射,表面等离子体极性膜的表面等离子体极性膜的衍射,金属晶状体和法布里 - 珀罗振动中的定期颗粒和空腔等离子体。此外,等离子体和光子晶体的互通导致光子和等离子体模式的有效杂交。不同的共振覆盖导致扇动过程描述的进一步修改。光学性质的表观复杂性通过调节杂交种或通过外部刺激的拓扑和组成而通过它们的广泛变异配对。简单廉价的技术与非常丰富的物理学结合,确保了混合晶体对基本研究和实际应用的吸引力。

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