碳纳米管中的一维等离子激元和杂化耦合极化子

IF 3.2 3区 化学 Q2 CHEMISTRY, PHYSICAL
James Kestyn, Sigfrid K. Yngvesson, Eric Polizzi
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引用次数: 0

摘要

本文介绍了实时随时间密度泛函理论(TDDFT)从头算模拟选定的扶手椅碳纳米管(CNTs)。通过缩放碳纳米管的长度,我们提供了对Tomonaga-Luttinger (T-L) 1-D等离子体速度的全面分析,证实了理论预测和实验观察的一致性。我们的发现包括各种共振下激发密度的详细可视化表示。此外,我们探索了T-L等离激子与单电子激发之间的耦合,确定了不同的一维极化子行为,如非线性引起的强谐波产生,以及与传统二维极化子不同的能隙。该研究强调了扶手椅单壁碳纳米管作为低损耗纳米腔谐振器的独特特性,展示了在强光-物质耦合和其他纳米光子器件中的潜在应用。本文采用的模拟框架为进一步研究复杂纳米结构中的一维等离子体现象和电子能谱开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

One-Dimensional Plasmons and Hybridized Coupled Polaritons in Carbon Nanotubes

One-Dimensional Plasmons and Hybridized Coupled Polaritons in Carbon Nanotubes
This paper presents real-time time-dependent density functional theory (TDDFT) ab initio simulations of selected armchair carbon nanotubes (CNTs). By scaling the lengths of CNTs, we provide a comprehensive analysis of the Tomonaga–Luttinger (T–L) 1-D plasmon velocities, confirming consistency with theoretical predictions and experimental observations. Our findings include detailed visual representations of excitation densities at various resonances. Furthermore, we explore the coupling between T–L plasmons and single electron excitations, identifying distinct 1-D polariton behaviors, such as strong harmonic generation due to nonlinearities, as well as energy gaps that differ from conventional 2-D polaritons. The study highlights the unique properties of armchair single-walled carbon nanotubes as low-loss nanocavity resonators, demonstrating potential applications in strong light-matter coupling and other nanophotonic devices. The simulation framework employed here opens avenues for further research into 1-D plasmonic phenomena and electronic spectroscopy in complex nanostructures.
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来源期刊
The Journal of Physical Chemistry C
The Journal of Physical Chemistry C 化学-材料科学:综合
CiteScore
6.50
自引率
8.10%
发文量
2047
审稿时长
1.8 months
期刊介绍: The Journal of Physical Chemistry A/B/C is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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