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Plasmon resonance in multilayer graphene nanoribbons:Plasmon resonance in multilayer graphene nanoribbons

机译:多层石墨烯纳米带中的等离子体共振:多层石墨烯纳米带中的等离子体共振

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摘要

Plasmon resonances in nanopatterned single-layer graphene nanoribbons (SL-GNRs), double-layer graphene nanoribbons (DL-GNRs) and triple-layer graphene nanoribbons (TL-GNRs) are studied experimentally using 'realistic' graphene samples. The existence of electrically tunable plasmons in stacked multilayer graphene nanoribbons was first experimentally verified by infrared microscopy. We find that the strength of the plasmonic resonance increases in DL-GNRs when compared to SL-GNRs. However, further increase was not observed in TL-GNRs when compared to DL-GNRs. We carried out systematic full-wave simulations using a finite-element technique to validate and fit experimental results, and extract the carrier-scattering rate as a fitting parameter. The numerical simulations show remarkable agreement with experiments for an unpatterned SLG sheet, and a qualitative agreement for a patterned graphene sheet. We conclude with our perspective of the key bottlenecks in both experiments and theoretical models.
机译:纳米图案化的单层石墨烯纳米带(SL-GNRs),双层石墨烯纳米带(DL-GNRs)和三层石墨烯纳米带(TL-GNRs)中的等离子体共振是使用“现实”的石墨烯样品进行实验研究的。首先通过红外显微镜通过实验验证了堆叠的多层石墨烯纳米带中电可调等离子体激元的存在。我们发现,与SL-GNR相比,DL-GNR中的等离子体共振强度增加。但是,与DL-GNR相比,TL-GNR并未观察到进一步的增加。我们使用有限元技术进行了系统的全波仿真,以验证和拟合实验结果,并提取载流子散射速率作为拟合参数。数值模拟显示出与无图案SLG片的实验具有显着的一致性,而有图案的石墨烯片与定性的一致性。我们以对实验和理论模型中关键瓶颈的观点作为结论。

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