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首页> 外文期刊>ACS nano >Insights into excitons confined to nanoscale systems: Electron-hole interaction, binding energy, and photodissociation
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Insights into excitons confined to nanoscale systems: Electron-hole interaction, binding energy, and photodissociation

机译:对仅限于纳米系统的激子的见解:电子-空穴相互作用,结合能和光解离

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摘要

The characteristics of nanoscale excitons - the primary excited states of nanoscale systems like conjugated polymers, molecular aggregates, carbon nanotubes, and nanocrystalline quantum dots - are examined through exploration of model systems. On the basis of a valence bond-type model, an intuition is developed for understanding and comparing nanoscale systems. In particular, electron-hole interactions are examined in detail, showing how and why they affect spectroscopy and properties such as binding energy. The relationship between the bound exciton states and the nanoscale analogue of free carriers (charge-transfer exciton states) is developed. It is shown why the electron and hole act as independent particles in this manifold of states. The outlook for the field is discussed on the basis of the picture developed in the paper, with an emphasis on exciton binding and photodissociation.
机译:纳米级激子的特性-共轭聚合物,分子聚集体,碳纳米管和纳米晶量子点等纳米级系统的主要激发态-通过模型系统的探索进行了研究。在价键类型模型的基础上,开发了一种用于理解和比较纳米级系统的直觉。特别是,将详细检查电子-空穴相互作用,以显示它们如何以及为什么会影响光谱和诸如结合能的性质。建立了束缚激子态与自由载流子的纳米尺度类似物(电荷转移激子态)之间的关系。这说明了为什么电子和空穴在这种状态的歧管中充当独立的粒子。在论文的基础上,讨论了该领域的前景,重点是激子结合和光离解。

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