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Metallic nanoparticle shape and size effects on aluminum oxide-induced enhancement of exciton-plasmon coupling and quantum dot emission

机译:金属纳米颗粒的形状和尺寸对氧化铝诱导的激子-等离子体耦合和量子点发射增强的影响

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摘要

We investigate the shape and size effects of gold metallic nanoparticles on the enhancement of exciton-plasmon coupling and emission of semiconductor quantum dots induced via the simultaneous impact of metal-oxide and plasmonic effects. This enhancement occurs when metallic nanoparticle arrays are separated from the quantum dots by a layered thin film consisting of a high index dielectric material (silicon) and aluminum oxide. Our results show that adding the aluminum oxide layer can increase the degree of polarization of quantum dot emission induced by metallic nanorods by nearly two times, when these nanorods have large aspect ratios. We show when the aspect ratio of these nanorods is reduced to half, the aluminum oxide loses its impact, leading to no improvement in the degree of polarization. These results suggest that a silicon/aluminum oxide layer can significantly enhance exciton-plasmon coupling when quantum dots are in the vicinity of metallic nanoantennas with high aspect ratios.
机译:我们研究了金金属纳米颗粒的形状和尺寸效应,该效应通过金属氧化物和等离子体效应的同时影响而引起的激子-等离子体激元耦合和半导体量子点发射的增强。当金属纳米颗粒阵列通过由高折射率介电材料(硅)和氧化铝组成的层状薄膜与量子点分开时,就会发生这种增强。我们的结果表明,当氧化铝纳米棒的长径比大时,添加氧化铝层可以将金属纳米棒引起的量子点发射的极化程度提高近两倍。我们表明,当这些纳米棒的纵横比减小到一半时,氧化铝将失去其影响,从而导致极化度没有改善。这些结果表明,当量子点位于具有高深宽比的金属纳米天线附近时,硅/氧化铝层可以显着增强激子-等离子体耦合。

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