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Plasmonic resonances in self-assembled reduced symmetry gold nanorod structures

机译:自组装还原对称金纳米棒结构中的等离子体共振。

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摘要

Self-assembled plasmonic Dolmen structures consisting of small gold nanorods (length = 50 nm and diameter = 20 nm) with a few nanometer gaps are observed to show coherent effects of super-radiance and characteristics of Fano resonance due to the significantly reduced symmetry of the structure. Relative to previous larger structures from top-down electron-beam lithography, the single crystallinity and atomically smooth surfaces of these self-assembled plasmonic structures result in 50% narrower resonances, and the small gaps with associated strong coupling enable observation of multiple dark and bright modes. By tilting the cap monomer with respect to the base dimer an order of magnitude increase in E-field enhancement at the Fano dip is obtained. In addition, a spectrally broad mode is observed indicating the strong impact of the geometry of the structure on the nature of coupled modes. The highly localized electric near-fields in the gaps will enable strong light matter interactions and the narrow resonances will be useful for improved figure of merits in inexpensive chemical and biosensing.
机译:观察到由小的金纳米棒(长度= 50 nm,直径= 20 nm)和几个纳米间隙组成的自组装等离激元Dolmen结构由于超对称性显着降低而显示出超辐射和Fano共振特性的相干效应。结构体。相对于以前的自上而下的电子束光刻技术,这些自组装等离子激元结构的单结晶度和原子光滑表面可导致50%的窄共振,并且带有相关的强耦合的小间隙可观察到多个暗和亮模式。通过使帽单体相对于基础二聚体倾斜,获得了在法诺浸没时电场增强的数量级增加。另外,观察到光谱较宽的模式,表明该结构的几何形状对耦合模式的性质的强烈影响。间隙中高度局部化的电近场将实现强光物质相互作用,狭窄的共振将有助于改善廉价化学和生物传感中的优值。

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