Nano-Raman spectral imaging of localized vibrations in two-dimensional systems

A. Jorio, Cassiano Rabelo, R. Nadas, Hudson Miranda, T. Vasconcelos, B. Archanjo, A. Gadelha, L. G. Cançado
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Abstract

Here we report graphene systems' nano-Raman hyperspectral imaging based on tip-enhanced Raman scattering (TERS). The vibrational and electronic structures are modulated within the graphene-related materials, leading to nano-scale changes in the behavior of electrons and phonons that can be used for spectral imaging. Furthermore, we utilize a He-focused ion beam to do nanolithography on graphene. We then show that the tiny features on graphene made by the He-focused ion beam can only be visualized under nanometer-scaled spectroscopy imaging. We have also imaged low-angle reconstructed twisted bilayer graphene, and our observations highlight the relevance of solitons and topological points for the structures' vibrational and electronic properties, relevant in the context of twistronics.
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二维系统局部振动的纳米拉曼光谱成像
在这里,我们报告了基于尖端增强拉曼散射(TERS)的石墨烯系统的纳米拉曼高光谱成像。石墨烯相关材料内的振动和电子结构被调制,导致电子和声子行为的纳米级变化,可用于光谱成像。此外,我们利用氦聚焦离子束在石墨烯上进行纳米光刻。然后,我们证明了氦聚焦离子束在石墨烯上形成的微小特征只能在纳米尺度的光谱成像下被可视化。我们还对低角度重建的扭曲双层石墨烯进行了成像,我们的观察结果强调了孤子和拓扑点与结构的振动和电子特性的相关性,这与扭曲电子学有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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