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Substrate effects onto complex modes and optical properties of 2D arrays of linear trimers of plasmonic nanospheres

机译:衬底对等离子体纳米球线性三聚体二维阵列的复杂模式和光学性质的影响

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We first introduce the formulation of 2D periodic dyadic Green's function to account for all the field contributions required to thoroughly describe the physics of a 2D array of nanospheres on top of a multilayered substrate. Then, we analyze substrate effects onto complex modes and optical properties of 2D arrays of linear trimers of plasmonic nanospheres and show that Fano resonant features appear for oblique TM-polarized plane wave incidence illumination. These features are attributed to the forced excitation of free modes supported by the array, here computed via modal analysis. We observe strengthened Fano features due to the presence of the multilayered substrate.
机译:我们首先介绍2D周期二元格林函数的公式化,以说明在多层基板顶部完全描述纳米球的2D阵列的物理过程所需的所有场贡献。然后,我们分析了衬底对等离子体纳米球线性三聚体的二维阵列的复杂模式和光学性质的影响,并显示了倾斜的TM偏振平面波入射照明会出现Fano共振特征。这些特征归因于阵列支持的自由模式的强制激发,此处通过模态分析来计算。由于多层基材的存在,我们观察到了增强的Fano功能。

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