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巴宾内到一半:固体和逆等离激元结构的耦合。

Babinet to the half: coupling of solid and inverse plasmonic structures.

机构信息

4th Physics Institute and Research Center SCoPE, University of Stuttgart , Pfaffenwaldring 57, 70569 Stuttgart, Germany.

出版信息

Nano Lett. 2013 Sep 11;13(9):4428-33. doi: 10.1021/nl402269h. Epub 2013 Aug 26.

Abstract

We study the coupling between the plasmonic resonances of solid and inverse metallic nanostructures. While the coupling between solid-solid and inverse-inverse plasmonic structures is well-understood, mixed solid-inverse systems have not yet been studied in detail. In particular, it remains unclear whether or not an efficient coupling is even possible and which prerequisites have to be met. We find that an efficient coupling between inverse and solid resonances is indeed possible, identify the necessary geometrical prerequisites, and demonstrate a novel solid-inverse plasmonic electromagnetically induced transparency (EIT) structure as well as a mixed chiral system. We furthermore show that for the coupling of asymmetric rod-shaped inverse and solid structures symmetry breaking is crucial. In contrast, highly symmetric structures such as nanodisks and nanoholes are straightforward to couple. Our results constitute a significant extension of the plasmonic coupling toolkit, and we thus envision the emergence of a large number of intriguing novel plasmonic coupling phenomena in mixed solid-inverse structures.

摘要

我们研究了固体和反向金属纳米结构的等离子体共振之间的耦合。虽然固体-固体和反向-反向等离子体结构之间的耦合已经得到很好的理解,但混合的固体-反向系统尚未得到详细研究。特别是,仍然不清楚是否可以实现有效的耦合,以及需要满足哪些前提条件。我们发现,反向和固体共振之间的有效耦合是确实可能的,确定了必要的几何前提条件,并展示了一种新型的固体-反向等离子体电磁感应透明(EIT)结构以及混合手性系统。此外,我们还表明,对于不对称棒状反向和固体结构的耦合,对称破缺是至关重要的。相比之下,高度对称的结构,如纳米盘和纳米孔,很容易耦合。我们的结果是对等离子体耦合工具包的重大扩展,因此我们预计在混合固体-反向结构中会出现大量有趣的新型等离子体耦合现象。

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