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首页> 外文期刊>Journal of Physics. Condensed Matter >Ultrafast emission decay with high emission efficiency of quantum dots in plasmonic-dielectric metasubstrates
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Ultrafast emission decay with high emission efficiency of quantum dots in plasmonic-dielectric metasubstrates

机译:超大发射衰减,等级电介质元素中量子点的高发射效率

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We report on the ultrafast decay of quantum dots that reaches nearly 430 ps without reduction in the emission intensity when near a metasubstrate of simple geometry. By implementing a layered structure of amorphous silicon sandwiched between two gold layers, the balance between plasmonic near field enhancement and energy transfer of the quantum dots has been shifted. This is achieved by tailoring the amount of Frster resonance energy transfer (FRET) to the top Au layer and plasmonic near field enhancement by the bottom Au layer. We also study the impact of deposition of Al oxide on the top Au layer, forming a charge barrier junction that can suppress Auger recombination of quantum dots. The results show that such a barrier can increase emission efficiency of the metastructure without significant reduction in the decay rate. We study the impact of formation of small nanoislands to contiguous islands via variation of the thickness of the top Au layer, and discuss how such morphologies determine the amount of FRET, screening of plasmonic field from the bottom Au layer, and enhancement of emission due to their own plasmonic fields.
机译:我们报告了近430 ps的量子点的超快衰减,而无需减少发射强度,在近几何形状的近似时。通过实施夹在两个金层之间的非晶硅的分层结构,近场增强近场增强和量子点的能量转移的平衡已经偏移。这是通过将底部Au层定制到顶部Au层和近场近场增强的FRST谐振能量转移(FRET)的量来实现。我们还研究了Al氧化物沉积在顶部Au层上的影响,形成了可以抑制量子点的螺旋螺旋重组的电荷屏障结。结果表明,这种屏障可以提高机构的发射效率,而不会降低衰减率。我们通过顶部AU层的厚度的变化来研究小纳米岛对邻接岛屿的影响,并讨论这种形态学如何确定FRET的量,从底部Au层筛选等级,以及由于增强发射他们自己的等离子体领域。

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