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Fluorescence quenching by plasmonic nanoantennas

机译:等离子体纳米烯烃的荧光猝灭

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Generalizing a previously developed analytical model of metal-enhanced fluorescence to the case of the strong coupling between a quantum emitter and a plasmonic nanoantenna, we study the fluorescence quenching in the strong coupling regime. When the nanoantenna is a simple Ag sphere and the quantum emitter approaches to its surface the fluorescence turns suppressed (both dipole and quadrupole moments of the system vanish) in the whole spectral range. However, if the nanoantenna is a plasmonic dimer with a tiny gap between two plasmonic nanoparticles, and the coupling grows due to the increase of the emitter dipole moment, the fluorescence quenching never occurs. This unexpected result explains why the nanolaser regime can be achieved with these nanoantennas, whereas a simple nanosphere coupled to quantum emitters can be a spaser.
机译:推广先前显影的金属增强荧光的分析模型与量子发射器和等离子体纳米纳米纳米之间的强耦合的情况下,我们研究了强耦合方案中的荧光猝灭。 当纳米南纳是一个简单的Ag球,并且量子发射器在其表面上接近荧光转弯(系统中的偶极子和四极血对时刻消失)在整个光谱范围内。 然而,如果纳米南纳是具有两种等离子体纳米颗粒之间具有微小差距的等离子体二聚体,并且由于发射极偶极矩的增加而增加,则荧光猝灭不会发生。 这种意想不到的结果解释了为什么可以用这些纳米环绕可以实现纳米淋片状态,而耦合到量子发射器的简单纳米可以是痉挛。

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