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'Hot spots' induced near-field enhancements in Au nanoshell and Au nanoshell dimer

机译:“热点”引起Au纳米壳和Au纳米壳二聚体的近场增强

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The influence of "hot spots" on the near-field properties of Au nanoshell and Au nanoshell dimers have been investigated by means of the finite element method. It is found with increasing the pinhole radius R that the maximal enhancement of near-field for Au nanoshell with pinhole parallel to the polarization increases from 17.906 at R = 0 nm to 36.979 at R = 0.8 nm, and then almost shows a negligible radius dependence. Large electric fields also can be observed inside the pinhole perpendicular to the polarization, which increases with increasing the pinhole radius. The near-field of Au nanoshell dimer depends strongly on the polarization and propagation directions of the incident light. Exponential decay behavior is found for the maximal enhancement of the electric field in the dimer junction as a function of the dimer separation. Furthermore, a very strong electric field is found in the junction between two Au nanoshells when the pinholes are located near the gap between the nanoshells.
机译:利用有限元方法研究了“热点”对Au纳米壳和Au纳米壳二聚体近场性能的影响。发现随着针孔半径R的增加,具有平行于极化的针孔的Au纳米壳的近场最大增强从R = 0 nm时的17.906增加到R = 0.8 nm时的36.979,然后几乎显示出可忽略的半径依赖性。在垂直于极化的针孔内也可以观察到大电场,该电场随针孔半径的增加而增加。金纳米壳二聚体的近场在很大程度上取决于入射光的偏振和传播方向。发现二聚体结中电场的最大增强的指数衰减行为是二聚体间距的函数。此外,当针孔位于纳米壳之间的间隙附近时,在两个金纳米壳之间的接合处发现非常强的电场。

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