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纳米壳中表面等离子体激元和激子的超强耦合

Ultrastrong coupling of plasmons and excitons in a nanoshell.

作者信息

Cacciola Adriano, Di Stefano Omar, Stassi Roberto, Saija Rosalba, Savasta Salvatore

机构信息

Dipartimento di Fisica e di Scienze della Terra, Università di Messina , Viale F. Stagno d'Alcontres 31, I-98166 Messina, Italy.

出版信息

ACS Nano. 2014 Nov 25;8(11):11483-92. doi: 10.1021/nn504652w. Epub 2014 Oct 27.

Abstract

The strong coupling regime of hybrid plasmonic-molecular systems is a subject of great interest for its potential to control and engineer light-matter interactions at the nanoscale. Recently, the so-called ultrastrong coupling regime, which is achieved when the light-matter coupling rate reaches a considerable fraction of the emitter transition frequency, has been realized in semiconductor and superconducting systems and in organic molecules embedded in planar microcavities or coupled to surface plasmons. Here we explore the possibility to achieve this regime of light-matter interaction at nanoscale dimensions. We demonstrate by accurate scattering calculations that this regime can be reached in nanoshells constituted by a core of organic molecules surrounded by a silver or gold shell. These hybrid nanoparticles can be exploited for the design of all-optical ultrafast plasmonic nanocircuits and -devices.

摘要

混合等离子体-分子系统的强耦合 regime 因其在纳米尺度上控制和设计光与物质相互作用的潜力而备受关注。最近,当光与物质的耦合速率达到发射体跃迁频率的相当一部分时所实现的所谓超强耦合 regime,已在半导体和超导系统以及嵌入平面微腔或耦合到表面等离子体的有机分子中得以实现。在此,我们探索在纳米尺度维度实现这种光与物质相互作用 regime 的可能性。我们通过精确的散射计算表明,在由有机分子核心被银或金壳包围构成的纳米壳中可以达到这种 regime。这些混合纳米粒子可用于设计全光超快等离子体纳米电路和器件。

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