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Eigenmode Tomography of Surface Charge Oscillations of Plasmonic Nanoparticles by Electron Energy Loss Spectroscopy

机译:电子能量损失谱法研究等离子体纳米粒子表面电荷振荡的本征模层析

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摘要

Plasmonic devices designed in three dimensions enable careful tuning of optical responses for control of complex electromagnetic interactions on the nanoscale. Probing the fundamental characteristics of the constituent nanoparticle building blocks is, however, often constrained by diffraction-limited spatial resolution in optical spectroscopy. Electron microscopy techniques, including electron energy loss spectroscopy (EELS), have recently been developed to image surface plasmon resonances qualitatively at the nanoscale in three dimensions using tomographic reconstruction techniques. Here, we present an experimental realization of a distinct method that uses direct analysis of modal surface charge distributions to reconstruct quantitatively the three-dimensional eigenmodes of a silver right bipyramid on a metal oxide substrate. This eigenmode tomography removes ambiguity in two-dimensional imaging of spatially localized plasmonic resonances, reveals substrate-induced mode degeneracy breaking in the bipyramid, and enables EELS for the analysis not of a particular electron-induced response but of the underlying geometric modes characteristic of particle surface plasmons.
机译:三维设计的等离子设备可以对光学响应进行仔细调整,以控制纳米级复杂的电磁相互作用。然而,在光学光谱学中,探查组成纳米颗粒构造块的基本特征常常受到衍射限制的空间分辨率的约束。最近,已经开发出包括电子能量损失谱(EELS)在内的电子显微镜技术,以利用断层摄影重建技术在三维上对纳米级的表面等离子体共振进行定性成像。在这里,我们介绍了一种独特方法的实验实现,该方法使用模式表面电荷分布的直接分析来定量地重建金属氧化物基底上的银右双锥体的三维本征模。本征模式层析成像消除了空间局部等离子体共振的二维成像中的歧义,揭示了双锥体中底物诱导的模式简并性破裂,并使EELS不仅能够分析特定的电子诱导响应,而且能够分析颗粒的潜在几何模式表面等离激元。

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