Namin Farhad A, Yuwen Yu A, Liu Liu, Panaretos Anastasios H, Werner Douglas H, Mayer Theresa S
Department of Electrical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Intel Corporation, 2200 Mission College Blvd, Santa Clara, CA 95054, USA.
Sci Rep. 2016 Feb 25;6:22009. doi: 10.1038/srep22009.
In this paper, the scattering properties of two-dimensional quasicrystalline plasmonic lattices are investigated. We combine a newly developed synthesis technique, which allows for accurate fabrication of spherical nanoparticles, with a recently published variation of generalized multiparticle Mie theory to develop the first quantitative model for plasmonic nano-spherical arrays based on quasicrystalline morphologies. In particular, we study the scattering properties of Penrose and Ammann- Beenker gold spherical nanoparticle array lattices. We demonstrate that by using quasicrystalline lattices, one can obtain multi-band or broadband plasmonic resonances which are not possible in periodic structures. Unlike previously published works, our technique provides quantitative results which show excellent agreement with experimental measurements.
本文研究了二维准晶等离子体晶格的散射特性。我们将一种新开发的合成技术(该技术能够精确制造球形纳米粒子)与最近发表的广义多粒子米氏理论的变体相结合,开发了首个基于准晶形态的等离子体纳米球阵列定量模型。特别地,我们研究了彭罗斯和阿曼-本克黄金球形纳米粒子阵列晶格的散射特性。我们证明,通过使用准晶晶格,可以获得在周期性结构中不可能出现的多波段或宽带等离子体共振。与之前发表的工作不同,我们的技术提供了与实验测量结果高度吻合的定量结果。