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Excitonic enhancement of nonradiative energy transfer to bulk silicon with the hybridization of cascaded quantum dots

机译:激射增强级联量子点杂交的非辐射能量转移到体硅

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摘要

We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excitons in an energy-gradient structure composed of a cascaded bilayer of green- and red-emitting CdTe quantum dots (QDs) on bulk silicon. Here NRET dynamics were systematically investigated comparatively for the cascaded energy-gradient and mono-dispersed QD structures at room temperature. We show experimentally that NRET from the QD layer into silicon is enhanced by 40% in the case of an energy-gradient cascaded structure as compared to the mono-dispersed structures, which is in agreement with the theoretical analysis based on the excited state population-depopulation dynamics of the QDs. © 2013 AIP Publishing LLC.
机译:我们报告了通过在体硅上由绿色和红色发射CdTe量子点(QD)的级联双层组成的能量梯度结构中的激子的非辐射能量转移(NRET),增强了硅的敏化。在这里,对于室温下级联的能量梯度和单分散QD结构,系统地比较了NRET动力学。我们通过实验证明,与单分散结构相比,在能量梯度级联结构的情况下,从QD层到硅的NRET增强了40%,这与基于激发态总体的理论分析相符- QD的人口减少动态。 ©2013 AIP Publishing LLC。

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