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纳米尺度光的二次电子成像。

Secondary Electron Imaging of Light at the Nanoscale.

机构信息

Department of Electrical and Computer Engineering, Ben-Gurion University of the Negev , Beer-Sheva 84105, Israel.

出版信息

ACS Nano. 2017 Mar 28;11(3):3274-3281. doi: 10.1021/acsnano.7b00548. Epub 2017 Mar 10.

Abstract

The interaction of fast electrons with metal atoms may lead to optical excitations. This exciting phenomenon forms the basis for the most powerful inspection methods in nanotechnology, such as cathodoluminescence and electron-energy loss spectroscopy. However, direct nanoimaging of light based on electrons is yet to be introduced. Here, we experimentally demonstrate simultaneous excitation and nanoimaging of optical signals using unmodified scanning electron microscope. We use high-energy electron beam for plasmon excitation and rapidly image the optical near fields using the emitted secondary electrons. We analyze dipole nanoantennas coupled with channel nanoplasmonic waveguides and observe both surface plasmons and surface plasmon polaritons with spatial resolution of 25 nm. Our experimental results are confirmed by rigorous numerical calculations based on full-wave solution of Maxwell's equations, showing high correlation between optical near fields and secondary electrons images. This demonstration of optical near-field mapping using direct electron imaging provides essential insights to the exciting relations between electrons plasmons and photons, paving the way toward secondary electron-based plasmon analysis at the nanoscale.

摘要

高速电子与金属原子的相互作用可能导致光学激发。这种令人兴奋的现象为纳米技术中最强大的检测方法奠定了基础,例如阴极发光和电子能量损失光谱。然而,基于电子的直接纳米成像尚未被引入。在这里,我们使用未经修改的扫描电子显微镜实验性地演示了光学信号的同时激发和纳米成像。我们使用高能电子束进行等离激元激发,并使用发射的二次电子快速成像光学近场。我们分析了与通道纳米等离激元波导耦合的偶极子纳米天线,并观察到了表面等离激元和表面等离激子极化激元,空间分辨率为 25nm。我们的实验结果通过基于麦克斯韦方程组全波解的严格数值计算得到了证实,表明光学近场和二次电子图像之间具有高度相关性。这种使用直接电子成像进行光学近场测绘的演示为电子等离激元和光子之间令人兴奋的关系提供了重要的见解,为在纳米尺度上基于二次电子的等离激元分析铺平了道路。

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