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High-Energy Excitonic Transitions in CdSe Quantum Dots

机译:CdSe量子点中的高能激子跃迁

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摘要

An atomistic direct diagonalization pseudopotential approach has been used to analyze the optical excitation spectra of CdSe quantum dots for up to 1.5 eV about the band gap. Good agreement is obtained with experiment for all the eight excitonic transitions, without resorting to fitting to the experimental data on dots. The observed excitonic transitions are identified in terms of specific pairs of valence and conduction single-particle states. For the lowest few transitions, the assignments agree with the conventional k.p effective-mass result, but this is not the case for the higher peaks. Indeed, we find in our atomistic approach that many more valence states exist within a given energy range than in the continuum k.p approach. Furthermore, we find that the mixing of even and odd angular momentum symmetry, disallowed in the contemporary simple k.p models, is actually permitted in the more general atomistic approach.
机译:原子直接对角化伪电位方法已被用于分析CdSe量子点的光激发光谱,其带隙约为1.5 eV。对于所有八个激子跃迁,都与实验获得了良好的一致性,而无需依靠点上的实验数据进行拟合。观察到的激子跃迁是根据特定的价对和传导单粒子状态对确定的。对于最少的过渡,分配与传统的k.p有效质量结果一致,但对于较高的峰则不是这样。确实,我们在原子方法中发现,在给定的能量范围内,存在比连续k.p方法更多的化合价态。此外,我们发现,在更简单的原子方法中,实际上允许在现代的简单k.p模型中不允许混合偶数和奇数角动量对称性。

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