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Exciton Dynamics in InSb Colloidal Quantum Dots.

机译:Insb胶体量子点中的激子动力学。

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摘要

Extraordinarily fast biexciton decay times and unexpectedly large optical gaps are two striking features observed in InSb colloidal quantum dots that have remained so far unexplained. The former, should its origin be identified as an Auger recombination process, would have important implications regarding carrier multiplication efficiency, suggesting these nanostructures as potentially ideal active materials in photovoltaic devices. The latter could offer new insights into the factors that influence the electronic structure and consequently the optical properties of systems with reduced dimensionality and provide additional means to fine-tune them. Using the state-of-the-art atomistic semiempirical pseudopotential method we unveil the surprising origins of these features and show that a comprehensive explanation for these properties requires delving deep into the atomistic detail of these nanostructures and is, therefore, outside the reach of less sophisticated, albeit more popular, theoretical approaches.
机译:异常快的双激子衰减时间和出乎意料的大光学间隙是在InSb胶体量子点中观察到的两个显着特征,至今仍无法解释。前者,如果其起源被确定为俄歇重组过程,将对载流子增殖效率产生重要影响,表明这些纳米结构是光伏器件中潜在的理想活性材料。后者可以为影响电子结构的因素提供新的见解,从而对尺寸减小的系统的光学性能产生影响,并提供其他微调方法。使用最新的原子半经验伪电势方法,我们揭示了这些特征的令人惊讶的起源,并显示出对这些性质的全面解释需要深入研究这些纳米结构的原子细节,因此,这是人们无法企及的。复杂的理论方法,尽管更受欢迎。

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