论文标题
从单颗粒状到相互作用介导的等离激元共振
From single-particle-like to interaction-mediated plasmonic resonances in graphene nanoantennas
论文作者
论文摘要
等离子体纳米结构将远低于衍射极限的电磁场限制,同时维持极端局部场的增强,引起了极大的关注。为了充分利用这些特性,对此类纳米结构中共振的识别和分类至关重要。最近,已经提出了1个新颖的共振分类功能,其适用性主要用于玩具模型系统。这种新颖的度量是基于能量的等离子性指数(EPI),它表征了分子纳米结构中共振的性质。 EPI根据激发的能量空间相干动力学区分了单粒子样或等离子性质。为了进一步发展这一新建立的措施,我们在这里提出了它的典范应用,以表征石墨烯纳米antennas的共振。特别是,我们专注于掺杂的纳米反丹纳的共鸣。该结构令人感兴趣,因为对真实空间中的电子动力学的考虑可能表明在低掺杂极限下选定的共振具有等离子性质,但我们的分析却揭示了相反的情况。我们发现,在未息和中度掺杂的纳米annna中,EPI将所有新兴共振分类为主要单粒子样,并且仅在重掺杂结构后,EPI观察到等离激元响应。
Plasmonic nanostructures attract tremendous attention as they confine electromagnetic fields well below the diffraction limit while simultaneously sustaining extreme local field enhancements. To fully exploit these properties, the identification and classification of resonances in such nanostructures is crucial. Recently, a novel figure of merit for resonance classification has been proposed 1 and its applicability was demonstrated mostly to toy model systems. This novel measure, the energy-based plasmonicity index (EPI), characterizes the nature of resonances in molecular nanostructures. The EPI distinguishes between either a single-particle-like or a plasmonic nature of resonances based on the energy space coherence dynamics of the excitation. To advance the further development of this newly established measure, we present here its exemplary application to characterize the resonances of graphene nanoantennas. In particular, we focus on resonances in a doped nanoantenna. The structure is of interest, as a consideration of the electron dynamics in real space might suggest a plasmonic nature of selected resonances in the low doping limit but our analysis reveals the opposite. We find that in the undoped and moderately doped nanoantenna, the EPI classifies all emerging resonances as predominantly single-particle-like and only after doping the structure heavily, the EPI observes plasmonic response.