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Subradiant, superradiant and Fano resonances in dimer and ring/disk nanocavities.

机译:二聚体和环/盘纳米腔中的亚辐射,超辐射和法诺共振。

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摘要

Subradiant and superradiant plasmon modes in ring/disk nanocavities and dialers are investigated theoretically and experimentally. The subradiance is obtained through an overall reduction of the total dipole moment of the hybridized mode due to antisymmetric coupling of the dipole moments of the parent plasmons. We observe the appearance of Fano resonances in the optical response of plasmonic nanocavities due to the coherent coupling between their superradiant and subradiant plasmon modes due to structural symmetry breaking. Both subradiant modes and Fano resonances exhibit substantial reductions in linewidth compared to the parent plasmon resonances, opening up possibilities in optical and near IR sensing via plasmon lineshape design. Four reduced-symmetry nanostructures Studied via Plasmon Hybridization and FDTD (Finite Difference Time Domain), a dolmen-style slab arrangement , a ring/disk dimer, a ring/disk cavity and a colloid dimer, clearly exhibit the strong polarization and geometry dependence expected for this behavior at the individual nanostructure level, confirmed by experimental result in each case, multiple Fano resonances occur as structure size is increased.
机译:从理论和实验上研究了环形/圆盘纳米腔和拨号器中的亚辐射和超辐射等离子体激元模式。由于母体等离子体激元的偶极矩的反对称耦合,通过整体降低混合模式的总偶极矩来获得亚辐射。由于结构对称性的破坏,由于它们的超辐射和亚辐射等离子体激元模式之间的相干耦合,我们在等离子体激元纳米腔的光学响应中观察到Fano共振的出现。与父等离激元共振相比,次辐射模式和Fano共振均显示出线宽的大幅降低,从而通过等离激元线形设计为光学和近红外传感开辟了可能性。通过等离激元杂交和FDTD(有限时域)研究的四个对称性降低的纳米结构,都门式平板结构,环形/圆盘二聚体,环形/圆盘腔和胶体二聚体,清楚地显示出强烈的极化和几何依赖性对于每种纳米结构水平的这种行为,在每种情况下均通过实验结果证实,随着结构尺寸的增加,会发生多个Fano共振。

著录项

  • 作者

    Sobhani Khakestar, Heidar.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Physics Optics.;Physics Radiation.;Physics Theory.
  • 学位 M.S.
  • 年度 2010
  • 页码 47 p.
  • 总页数 47
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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