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三聚体等离子体分子:对称性的作用。

Trimeric plasmonic molecules: the role of symmetry.

机构信息

Department of Chemical Physics, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Nano Lett. 2011 Jun 8;11(6):2440-5. doi: 10.1021/nl2008532. Epub 2011 May 10.

Abstract

Artificial plasmonic molecules possess excitation modes that are defined by their symmetry and obey group theory rules, just like conventional molecules. We follow the evolution of surface-plasmon spectra of plasmonic trimers, assembled from equal-sized silver nanoparticles, as gradual geometric changes break their symmetry. The spectral modes of an equilateral triangle, the most symmetric structure of a trimer, are degenerate. This degeneracy is lifted as the symmetry is lowered when one of the vertex angles in opened, which also leads to a subtle transition between bright and dark modes. Our experimental results are quantitatively explained using numerical simulations and plasmon hybridization theory.

摘要

人工等离子体分子具有由其对称性定义的激发模式,并遵守群论规则,就像传统分子一样。我们跟踪由等大小的银纳米粒子组装而成的等离子体三聚体的表面等离子体光谱的演变,因为逐渐的几何变化会破坏其对称性。等边三角形的光谱模式(三聚体最对称的结构)是简并的。当一个顶角打开时,对称性降低,简并被解除,这也导致亮暗模式之间的微妙转变。我们的实验结果使用数值模拟和等离子体杂化理论进行了定量解释。

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