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通过在扫描透射电子显微镜中结合互补光谱技术在三维空间中探测等离激元。

Probing plasmons in three dimensions by combining complementary spectroscopies in a scanning transmission electron microscope.

作者信息

Hachtel J A, Marvinney C, Mouti A, Mayo D, Mu R, Pennycook S J, Lupini A R, Chisholm M F, Haglund R F, Pantelides S T

机构信息

Department of Physics and Astronomy, Vanderbilt University Nashville, TN 37235, USA. Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.

出版信息

Nanotechnology. 2016 Apr 15;27(15):155202. doi: 10.1088/0957-4484/27/15/155202. Epub 2016 Mar 2.

Abstract

The nanoscale optical response of surface plasmons in three-dimensional metallic nanostructures plays an important role in many nanotechnology applications, where precise spatial and spectral characteristics of plasmonic elements control device performance. Electron energy loss spectroscopy (EELS) and cathodoluminescence (CL) within a scanning transmission electron microscope have proven to be valuable tools for studying plasmonics at the nanoscale. Each technique has been used separately, producing three-dimensional reconstructions through tomography, often aided by simulations for complete characterization. Here we demonstrate that the complementary nature of the two techniques, namely that EELS probes beam-induced electronic excitations while CL probes radiative decay, allows us to directly obtain a spatially- and spectrally-resolved picture of the plasmonic characteristics of nanostructures in three dimensions. The approach enables nanoparticle-by-nanoparticle plasmonic analysis in three dimensions to aid in the design of diverse nanoplasmonic applications.

摘要

三维金属纳米结构中表面等离子体激元的纳米级光学响应在许多纳米技术应用中发挥着重要作用,其中等离子体激元元件精确的空间和光谱特性控制着器件性能。扫描透射电子显微镜内的电子能量损失谱(EELS)和阴极发光(CL)已被证明是研究纳米级等离子体激元的宝贵工具。每种技术都已单独使用,通过断层扫描生成三维重建,通常借助模拟进行完整表征。在此,我们证明这两种技术的互补性,即EELS探测束流诱导的电子激发而CL探测辐射衰变,使我们能够直接获得纳米结构等离子体激元特性在三维空间上的空间和光谱分辨图像。该方法能够在三维空间中逐个纳米颗粒地进行等离子体激元分析,以辅助设计各种纳米等离子体激元应用。

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