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Ultrafast manipulation of strong coupling in metal-molecular aggregate hybrid nanostructures

机译:金属-分子聚集体杂化纳米结构中超强耦合的超快操纵

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摘要

We demonstrate an ultrafast manipulation of the Rabi splitting energy ΩR in a metal-molecular aggregate hybrid nanostructure. Femtosecond excitation drastically alters the optical properties of a model system formed by coating a gold nanoslit array with a thin J-aggregated dye layer. Controlled and reversible transient switching from strong (ΩR ? 55 meV) to weak (ΩR ≈ 0) coupling on a sub-ps time scale is directly evidenced by mapping the nonequilibrium dispersion relations of the coupled excitations. Such a strong, externally controllable coupling of excitons and surface plasmon polaritons is of considerable interest for ultrafast all-optical switching applications in nanoscale plasmonic circuits.
机译:我们证明了在金属-分子聚集体杂化纳米结构中Rabi分裂能ΩR的超快操纵。飞秒激发极大地改变了模型系统的光学特性,该模型系统是通过在金纳米狭缝阵列上覆盖一层薄的J聚集染料层而形成的。通过映射耦合激发的非平衡色散关系,可以直接证明在亚ps时标上从强(ΩR?55 meV)到弱(ΩR≈0)耦合的可逆可控瞬态切换。激子与表面等离激元极化子的这种强的,外部可控的耦合对于纳米级等离激元电路中的超快全光开关应用非常感兴趣。

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