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Wannier-Frenkel hybrid exciton in organic-semiconductor quantum dot heterostructures

机译:有机半导体量子点异质结构中的Wannier-Frenkel混合激子

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摘要

The formation of a hybridization state of Wannier Mott exciton and Frenkel exciton in different hetero-structure configurations involving quantum dots is investigated. The hybrid excitons exist at the interfaces of the semiconductors quantum dots and the organic medium, having unique properties and a large optical non-linearity. The coupling at resonance is very strong and tunable by changing the parameters of the systems (dot radius, dot-dot distance, generation of the organic dendrites and the materials of the system etc.). Different semiconductor quantum dot-organic material combination systems have been considered such as a semiconductor quantum dot lattice embedded in an organic host, a semiconductor quantum dot at the center of an organic dendrite, a semiconductor quantum dot coated by an organic shell.
机译:研究了Wannier Mott激子和Frenkel激子在涉及量子点的不同异质结构中的杂交状态。混合激子存在于半导体量子点和有机介质的界面处,具有独特的特性和较大的光学非线性。通过更改系统参数(点半径,点-点距离,有机树枝状晶体的生成和系统材料等),共振时的耦合非常强且可调。已经考虑了不同的半导体量子点-有机材料组合系统,例如嵌入有机主体中的半导体量子点晶格,位于有机枝晶中心的半导体量子点,被有机壳覆盖的半导体量子点。

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