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Optical Properties of Strongly Coupled Plasmon-Exciton Hybrid Nanostructures.

机译:强耦合等离子体激子混合纳米结构的光学性质。

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摘要

Strongly coupled plasmon-exciton hybrid nanostructures are fabricated and their optical properties are studied. The plasmonic and excitonic systems are gold nanoshells and J-aggregates, respectively. Gold nanoshells are tunable plasmonic core-shell nanoparticles which can sustain distinct dipole and quadrupole plasmons with resonant energies dependent on core-size/shell-thickness ratio. J-aggregates are organic semiconducting material with excitons that possess very high oscillator strength making them suitable for coherent interaction with other kinds of excitations. The J-aggregates are formed on the surface of the nanoshells when a water/ethanol (50:50) solution of the dye molecules (2,2'-dimethyl-8-phenyl-5,6,5',6'-dibenzothiacarbocyanine chloride) is added to an aqueous solution of nanoshells. These nanoshell-J-aggregate complexes exhibit coherent coupling between localized plasmons of the nanoshell and excitons of the molecular J-aggregates. Coherent coupling strengths of 120 meV and 100 meV have been measured for dipole and quadrupole plasmon interactions with excitons, respectively. Femtosecond time-resolved transmission spectroscopy studies are carried out in order to understand the possible sources of optical nonlinearities in the nanoshell-J-aggregate hybrid. Transient absorption of the interacting plasmon-exciton system is observed, in dramatic contrast to the photoinduced transmission of the pristine J-aggregate. An additional, transient Fano-shaped modulation within the Fano dip is also observable. The transient behavior of the J-aggregate-Au nanoshell complex is described by a combined one-exciton and two-exciton state model coupled to the nanoshell plasmon.
机译:制备了强耦合的等离激子-激子杂化纳米结构,并研究了它们的光学性质。等离子体和激子体系分别是金纳米壳和J聚集体。金纳米壳是可调谐的等离激元核-壳纳米粒子,其可以维持不同的偶极和四极等离激元,其共振能量取决于核尺寸/壳-厚度比。 J聚集体是具有激子的有机半导体材料,其激振强度很高,使其适合与其他类型的激发进行相干相互作用。当染料分子(2,2'-二甲基-8-苯基-5,6,5',6'-二苯并噻唑碳菁)的水/乙醇(50:50)溶液形成时,J聚集体在纳米壳表面形成将其加入到纳米壳的水溶液中。这些纳米壳-J-聚集体复合物在纳米壳的局部等离激元和分子J-聚集体的激子之间表现出相干耦合。对于偶极和四极等离子体激元与激子的相互作用,已分别测量了120 meV和100 meV的相干耦合强度。飞秒时间分辨透射光谱研究是为了了解纳米壳-J-聚集体杂化物中光学非线性的可能来源。观察到相互作用的等离激子-激子系统的瞬态吸收,与原始J-聚集体的光诱导透射形成鲜明对比。还可以观察到Fano浸入量内的其他瞬态Fano形调制。 J-聚集体-Au纳米壳复合物的瞬态行为通过耦合到纳米壳等离子体激元的一激子和二激子组合状态模型来描述。

著录项

  • 作者

    Fofang, Nche Tumasang.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Nanoscience.;Nanotechnology.;Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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