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Electrodynamical Treatment of the Electron-Hole Long-Range Exchange Interaction in Semiconductor Nanocrystals

机译:半导体纳米晶体中电子-空穴远程交换相互作用的电动力学处理

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摘要

We show that the contribution to the fine structure of the ground exciton level in a semiconductor nanocrystal due to the long-range part of the electron-hole exchange interaction can be equivalently described as arising from the mechanical exciton interaction with the exciton-induced macroscopic longitudinal electric field. Particular cases of nanocrystals with cubic and wurtzite crystal lattice in the strong confinement regime are studied taking into account the complex structure of the valence band. A simplified model accounting for the exciton ground-level splitting and exploiting an effective local scalar susceptibility is established.
机译:我们表明,由于电子-空穴交换相互作用的长距离部分,对半导体纳米晶体中的激子能级的精细结构的贡献可以等效地描述为与激子引起的宏观纵向相互作用引起的机械激子相互作用。电场。考虑到价带的复杂结构,研究了在强约束条件下具有立方和纤锌矿晶格的纳米晶体的特殊情况。建立了简化的模型,该模型考虑了激子的地平面分裂并利用了有效的局部标量磁化率。

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