论文标题

同时通过阴极发光进行纳米级激发和排放映射

Simultaneous nanoscale excitation and emission mapping by cathodoluminescence

论文作者

Matsukata, Taeko, Ogura, Shintaro, de Abajo, F. Javier García, Sannomiya, Takumi

论文摘要

基于自由电子的光谱镜可以揭示半导体材料和纳米型设备的纳米级光学特性,其空间分辨率远远超出了光的衍射极限。但是,检索到的空间信息被限制在电子束位置定义的激发空间,而与样品中探测的光学模式的空间扩展相关的有关离域的信息迄今仍缺失,尽管它与裁定纳米结构的光学特性有关。在这项研究中,我们展示了一种阴极发光方法,该方法可以在纳米级处访问激发和发射空间,通过揭示纳米纤溶酶系统中的电磁能传输来可视化,通过揭示了亚波长发射位置调制以及可视化电磁能传输,从而说明了这种同时激发和发射映射技术的功能。除了这些结果的基本兴趣外,我们的技术还可以使我们进入以前无法接近的纳米级光学特性。

Free-electron-based spectroscopies can reveal the nanoscale optical properties of semiconductor materials and nanophotonic devices with a spatial resolution far beyond the diffraction limit of light. However, the retrieved spatial information is constrained to the excitation space defined by the electron beam position, while information on the delocalization associated with the spatial extension of the probed optical modes in the specimen has so far been missing, despite its relevance in ruling the optical properties of nanostructures. In this study, we demonstrate a cathodoluminescence method that can access both excitation and emission spaces at the nanoscale, illustrating the power of such simultaneous excitation and emission mapping technique by revealing a sub-wavelength emission position modulation as well as by visualizing electromagnetic energy transport in nanoplasmonic systems. Besides the fundamental interest of these results, our technique grants us access into previously inaccessible nanoscale optical properties.

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