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Energetics and dynamics of exciton-exciton interactions in compound colloidal semiconductor quantum dots

机译:复合胶体半导体量子点中激子-激子相互作用的能级和动力学

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摘要

The energetics and dynamics of multiply excited states in single material colloidal quantum dots have already been shown to exhibit universal trends. Here we attempt to identify similar trends in exciton-exciton interactions within compound colloidal quantum dots. For this end, we thoroughly review previously available data and also present experimental data on several newly synthesized systems, focusing on core/shell nanocrystals with a type-II band alignment. A universal condition for the transition from binding to repulsion of the biexciton (type-I-type-II transition) is established in terms of the change in the exciton radiative lifetime. A scaling rule is also presented for the magnitude of exciton-exciton repulsion. In contrast, we do not identify a clear universal scaling of the non-radiative Auger recombination lifetime of the biexciton state. Finally, a perspective on future applications of engineered multiexcitonic states is presented.
机译:单一材料胶体量子点中多重激发态的能量和动力学已经显示出普遍的趋势。在这里,我们试图确定复合胶体量子点内激子-激子相互作用的相似趋势。为此,我们彻底审查了先前可获得的数据,并提供了一些新合成系统的实验数据,重点研究了具有II型能带对准的核/壳纳米晶体。根据激子辐射寿命的变化,建立了从双激子结合到排斥的过渡的通用条件(I型-II型过渡)。还给出了激子-激子斥力大小的定标规则。相反,我们没有确定双激子态的非辐射俄歇复合寿命的明显普遍尺度。最后,提出了关于工程多激子态的未来应用的观点。

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