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Plasmonic Dicke effect

机译:等离子迪克效应

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We study cooperative emission by an ensemble of emitters, such as fluorescing molecules or semiconductor quantum dots, near a metal nanoparticle. The primary mechanism of cooperative emission is resonant energy transfer between emitters and plasmons rather than Dicke radiative coupling between emitters. The emission is dominated by three superradiant states with the same quantum yield as a single emitter, leading to a drastic reduction of ensemble radiated energy down to just thrice of that by a single emitter, the remaining energy being dissipated in the metal through subradiant states. We perform numerical calculations of system eigenstates and find that the plasmonic Dicke effect interactions affect is not impacted by the interactions between emitters or non-radiative losses in the metal.
机译:我们研究了金属纳米粒子附近由诸如荧光分子或半导体量子点之类的发射器的整体的协作发射。协同发射的主要机制是发射器和等离激元之间的共振能量转移,而不是发射器之间的狄克辐射耦合。该辐射由三个超辐射态所控制,其量子产率与单个发射器相同,从而导致整体辐射能急剧下降至单个发射器的三分之二,其余能量通过亚辐射态在金属中耗散。我们对系统本征态进行了数值计算,发现等离子Dicke效应的相互作用不受金属发射体之间相互作用或非辐射损耗的影响。

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