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Morphology dependent near-field response in atomistic plasmonic nanocavities

机译:形态相关的近场的反应原子的电浆nanocavities

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摘要

In this work we examine how the atomistic morphologies of plasmonic dimers control the near-field response by using an atomistic electrodynamics model. At large separations, the field enhancement in the junction follows a simple inverse power law as a function of the gap separation, which agrees with classical antenna theory. However, when the separations are smaller than 0.8 nm, the so-called quantum size regime, the field enhancement is screened and thus deviates from the simple power law. Our results show that the threshold distance for the deviation depends on the specific morphology of the junction. The near field in the junction can be localized to an area of less than 1 nm(2) in the presence of an atomically sharp tip, but the separation distances leading to a large confinement of near field depend strongly on the specific atomistic configuration. More importantly, the highly confined fields lead to large field gradients particularly in a tip-to-surface junction, which indicates that such a plasmonic structure favors observing strong field gradient effects in near-field spectroscopy. We find that for atomically sharp tips the field gradient becomes significant and depends strongly on the local morphology of a tip. We expect our findings to be crucial for understanding the origin of high-resolution near-field spectroscopy and for manipulating optical cavities through atomic structures in the strongly coupled plasmonic systems.
机译:在这个工作我们检查原子论的电浆二聚体控制的形态用一个原子论的近场的响应电动力学模型。在结一场增强简单的逆幂律的差距分离,同意古典天线理论。比0.8 nm,所谓的量子尺寸政权,田间筛选,从而增强偏离简单的幂律。显示的阈值距离偏差取决于的具体形态结。是局部面积小于1 nm (2)自动的存在一个尖端,但是分离距离大近场强烈依赖于监禁特定的原子论的配置。重要的是,导致高度限制字段大场梯度尤其是tip-to-surface结,这表明这样一个电浆结构倾向于观察强场在近场梯度的影响光谱学。提示磁场梯度变得重要很大程度上取决于当地的形态小费。理解高分辨率的起源近场光谱和操纵通过原子结构的光学腔强耦合电浆系统。

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