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自由电子与纳米石墨烯之间的非线性相互作用。

Nonlinear Interactions between Free Electrons and Nanographenes.

作者信息

Cox Joel D, García de Abajo F Javier

机构信息

Center for Nano Optics, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

Danish Institute for Advanced Study, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

Nano Lett. 2020 Jul 8;20(7):4792-4800. doi: 10.1021/acs.nanolett.0c00538. Epub 2020 May 27.

Abstract

Free electrons act as a source of highly confined, spectrally broad optical fields that are widely used to map photonic modes with nanometer/millielectronvolt space/energy resolution through currently available electron energy-loss and cathodoluminescence spectroscopies. These techniques are understood as probes of the linear optical response, while nonlinear dynamics has escaped observation with similar degree of spatial detail, despite the strong enhancement of the electron evanescent field with decreasing electron energy. Here, we show that the field accompanying low-energy electrons can trigger anharmonic response in strongly nonlinear materials. Specifically, through realistic quantum-mechanical simulations, we find that the interaction between ≲100 eV electrons and plasmons in graphene nanostructures gives rise to substantial optical nonlinearities that are discernible as saturation and spectral shifts in the plasmonic features revealed in the cathodoluminescence emission and electron energy-loss spectra. Our results support the use of low-energy electron-beam spectroscopies for the exploration of nonlinear optical processes in nanostructures.

摘要

自由电子可作为高度受限、光谱宽广的光场源,通过现有的电子能量损失谱和阴极发光光谱,这些光场被广泛用于以纳米/毫电子伏特的空间/能量分辨率绘制光子模式。这些技术被视为线性光学响应的探针,然而,尽管随着电子能量降低,电子倏逝场会显著增强,但非线性动力学仍未以类似程度的空间细节得到观测。在此,我们表明伴随低能电子的场可在强非线性材料中引发非谐响应。具体而言,通过实际的量子力学模拟,我们发现石墨烯纳米结构中能量约低于100 eV的电子与等离激元之间的相互作用会产生显著的光学非线性,这在阴极发光发射和电子能量损失谱中揭示的等离激元特征的饱和及光谱位移中清晰可见。我们的结果支持利用低能电子束光谱来探索纳米结构中的非线性光学过程。

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