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Relaying of the local enhanced electric-field using stacked gold bowtie nanoantennas

机译:使用堆叠的金蝴蝶结纳米环纳米局部增强电场的继电器

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摘要

We demonstrate the possibility of designing plasmonic structures that extend, and even further concentrate the field enhancement in the feed-gap region of single-layer Au bowtie nanoantennas (BNAs) hundreds of nanometers away from the initial metal-dielectric interface. The design is based on a stack of Au BNAs with progressively reduced gap distances sandwiched by thin dielectric layers. We find that this stacked BNA geometry also behaves as a near-field focusing lens of nanometer focal length. By merely controlling the number of BNAs in a stack and thickness of the accompanying dielectric layers, we show that the usual fast-damping field enhancement right above a 50 nm thick base BNA can be relayed and maintained at >10(4) over a distance of at least up to 200 nm above the base BNA surface. Our novel plasmonic structures offer an approach to design plasmonic nanostructures for applications in metamaterial engineering, SERS, and nonlinear optics.
机译:我们展示了设计延伸的等离子体结构的可能性,甚至进一步集中了从初始金属介质接口的单层Au Bowtie NanoantennaS(BNA)数百纳米的馈影区域中的野外增强。 该设计基于一堆AU BNA,其具有逐渐减小的间隙距离夹在薄介电层上。 我们发现,该堆叠的BNA几何形状也表现为纳米焦距的近场聚焦镜头。 通过仅在伴随介电层的堆叠和厚度中控制BNA的数量,我们表明,在距离中可以使50nm厚基部BNA高于50nm厚基部BNA的常规衰减场增强率在> 10(4)距离 在基础BNA表面上方至少高达200nm。 我们的新型等离子体结构提供了一种在超材料工程,SERS和非线性光学中设计等离子体纳米结构的方法。

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