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等离子体光学的阴暗面。

The dark side of plasmonics.

机构信息

School of Physics, The University of Melbourne, Parkville, Victoria, Australia.

出版信息

Nano Lett. 2013 Aug 14;13(8):3722-8. doi: 10.1021/nl401656e. Epub 2013 Jul 8.

Abstract

Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a set of interacting nanoparticles. When compared to bright modes, dark modes have longer lifetimes due to their lack of a net dipole moment, making them attractive for a number of applications. We demonstrate the excitation and optical detection of a collective dark plasmonic mode from individual plasmonic trimers. The trimers consist of triangular arrangements of gold nanorods, and due to this symmetry, the lowest-energy dark plasmonic mode can interact with radially polarized light. The experimental data presented confirm the excitation of this mode, and its assignment is supported with an electrostatic approximation wherein these dark modes are described in terms of plasmon hybridization. The strong confinement of energy in these modes and their associated near fields hold great promise for achieving strong coupling to single photon emitters.

摘要

等离子体暗模式是纯近场模式,可以由一组相互作用的纳米粒子中的等离子体杂交产生。与明模式相比,由于暗模式没有净偶极矩,因此具有更长的寿命,这使得它们在许多应用中具有吸引力。我们展示了从单个等离子体三聚体中激发和光学检测集体暗等离子体模式。三聚体由金纳米棒的三角形排列组成,由于这种对称性,最低能量的暗等离子体模式可以与径向偏振光相互作用。所呈现的实验数据证实了这种模式的激发,并且通过静电近似来支持其分配,其中这些暗模式是根据等离子体杂交来描述的。这些模式中能量的强约束及其相关的近场对于实现与单个光子发射器的强耦合具有很大的前景。

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