Understanding the impact of particle separation in a plasmonic dimer on the resonance wavelength

S. Smaili, Y. Massoud
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引用次数: 2

Abstract

Plasmonic dimers consist of two nanopar-ticles in near vicinity of each other, which give the dimer unique properties that the single constituents do not have. Given the increased interest in these types of particles, establishing efficient modeling techniques for dimers becomes essential to be able to design systems with optimal performance. Moreover, modeling dimers is a key first step into modeling more complex systems of interacting nanoparticles where traditional simulation methods are highly inefficient. In this paper, we present an efficient modeling technique for dimers based on the quasistatic approximation. Our modeling technique can capture the resonance properties of dimers and our formulation of the quasistatic approximation problem is efficient to implement.
了解等离子二聚体中粒子分离对共振波长的影响
等离子体二聚体由两个相互靠近的纳米粒子组成,这使二聚体具有单一成分所不具有的独特性质。鉴于对这些类型的颗粒的兴趣增加,建立有效的二聚体建模技术对于能够设计具有最佳性能的系统至关重要。此外,模拟二聚体是模拟更复杂的相互作用纳米粒子系统的关键的第一步,而传统的模拟方法效率非常低。本文提出了一种基于准静态近似的二聚体有效建模技术。我们的建模技术可以捕捉到二聚体的共振特性,我们的准静态近似问题的公式是有效的实现。
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