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Multiple Fano Resonances with Tunable Electromagnetic Properties in Graphene Plasmonic Metamolecules

机译:石墨烯等离子高分子中具有可调电磁特性的多个Fano共振

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摘要

Multiple Fano resonances (FRs) can be produced by destroying the symmetry of structure or adding additional nanoparticles without changing the spatial symmetry, which has been proved in noble metal structures. However, due to the disadvantages of low modulation depth, large damping rate, and broadband spectral responses, many resonance applications are limited. In this research paper, we propose a graphene plasmonic metamolecule (PMM) by adding an additional 12 nanodiscs around a graphene heptamer, where two Fano resonance modes with different wavelengths are observed in the extinction spectrum. The competition between the two FRs as well as the modulation depth of each FR is investigated by varying the materials and the geometrical parameters of the nanostructure. A simple trimer model, which emulates the radical distribution of the PMM, is employed to understand the electromagnetic field behaviors during the variation of the parameters. Our proposed graphene nanostructures might find significant applications in the fields of single molecule detection, chemical or biochemical sensing, and nanoantenna.
机译:可以通过破坏结构的对称性或添加其他纳米粒子而不改变空间对称性来产生多个Fano共振(FR),这已在贵金属结构中得到证明。然而,由于低调制深度,大阻尼率和宽带频谱响应的缺点,许多共振应用受到了限制。在这篇研究论文中,我们通过在石墨烯七聚体周围添加另外的12个纳米圆盘,提出了石墨烯等离子体元(PMM),其中在消光光谱中观察到了两种具有不同波长的Fano共振模式。通过改变纳米结构的材料和几何参数来研究两个FR之间的竞争以及每个FR的调制深度。一个简单的三聚体模型可以模拟PMM的基本分布,用于了解参数变化期间的电磁场行为。我们提出的石墨烯纳米结构可能会在单分子检测,化学或生物化学传感以及纳米天线领域中找到重要的应用。

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