俄歇效应
量子点
比克西顿
激子
赝势
多激子产生
维数之咒
纳米结构
纳米技术
材料科学
理想(伦理)
物理
化学物理
螺旋钻
凝聚态物理
计算机科学
原子物理学
哲学
机器学习
认识论
作者
Andrew Sills,P. Harrison,Marco Califano
标识
DOI:10.1021/acs.jpclett.5b02408
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.
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