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Plasmonic Fano resonances in nanohole quadrumers for ultra-sensitive refractive index sensing

机译:纳米孔四分频器中的等离子Fano共振用于超灵敏的折射率感应

摘要

Plasmonic Fano resonances arising from electromagnetic interactions in metallic nanostructures exhibit spectral characteristics analogous to those from the electron waves in oligomer molecules. Though a great deal of research interest has been attracted to study the optical properties and explore the associated applications of metallic nanoparticle oligomers, the plasmonic response of their complementary structures – nanohole clusters – remains largely unexplored. Here we show numerically by a full-wave finite element method that a nanohole quadrumer can sustain two Fano resonances when the incident electric field is oriented along the long-axis of the quadrumer system. The underlying physical mechanisms responsible for the Fano resonance formation are revealed explicitly by spectrally deconstructing the Fano lineshape, spatially decomposing the structure configuration and mapping the electric field profile and charge distribution, which collectively demonstrate a strong mode coupling between either two antiparallel dipolar modes or dipole–quadruple modes in the nanohole quadrumer. We further show that the spectral profile of the Fano resonance including the resonance linewidth and spectral contrast can be engineered flexibly by adjusting the geometrical parameters of the nanohole cluster, including the nanohole diameter, film thickness and interhole distance. With an optimized and realistic geometrical configuration, the nanohole quadrumer system exhibits an overall sensing figure of merit up to 14.25, far surpassing the value reported for conventional nanoparticle oligomers.
机译:由金属纳米结构中的电磁相互作用引起的等离子体法诺共振表现出与低聚物分子中的电子波相似的光谱特性。尽管吸引了许多研究兴趣来研究金属纳米颗粒低聚物的光学性质和相关应用,但它们互补结构(纳米孔团簇)的等离子体响应尚未得到充分研究。在这里,我们通过全波有限元方法数值表明,当入射电场沿正交系统的长轴定向时,纳米孔正交积分器可以维持两个Fano共振。通过对Fano线形进行光谱解构,在空间上分解结构构型并绘制电场分布和电荷分布图,可以明确揭示导致Fano共振形成的潜在物理机制,这共同证明了两个反平行偶极子模式或偶极子之间的强模式耦合。 –纳米孔四分频器中的四重模式。我们进一步表明,可以通过调节纳米孔团簇的几何参数,包括纳米孔直径,膜厚和孔间距,灵活地设计Fano共振的光谱轮廓,包括共振线宽和光谱对比度。通过优化和逼真的几何构型,纳米孔四极杆系统显示出高达14.25的总体传感品质因数,远远超过了传统纳米颗粒低聚物的报道值。

著录项

  • 作者

    Zhan Y; Lei DY; Li X; Maier SA;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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