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Spin- and charge-density excitations in quantum dots: a Raman study

机译:量子点中的自旋和电荷密度激发:拉曼研究

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in this article we review our recent experimental and theoretical investigations of electronic excitations in GaAs-AlGaAs quantum dots. In the experimental structures we have observed collective spin- (SIDE) and charge-density excitations (CDE), and, under conditions of extreme resonance, excitations which can be attributed to nearly unrenormalized single-particle-like transitions (SPE). We compare our experimental results to a theory based on the time-dependent local-density approximation (TDLDA) concerning (i) parity selection rules and (ii) conditions when SPE occur in the spectra. This shows that only a theory which takes into account the resonance enhancements mediated by the valence band states can qualitatively reproduce the experimental findings. To get a deeper understanding of the character of the SPE, we present an intriguing comparison of Kohn-Sham calculations with results of an exact treatment by numerical diagonalization, We demonstrate that even for six electrons per quantum dot, SPE can be expected. (C) 2001 Elsevier Science Ltd. All rights reserved. References: 27
机译:在本文中,我们回顾了我们最近对GaAs-AlGaAs量子点中电子激发的实验和理论研究。在实验结构中,我们观察到了集体自旋(SIDE)和电荷密度激发(CDE),并且在极端共振条件下,激发可以归因于几乎未重整化的单粒子样跃迁(SPE)。我们将实验结果与基于瞬态局部密度近似(TDLDA)的理论进行了比较,该理论涉及(i)奇偶校验选择规则和(ii)光谱中SPE发生的条件。这表明,只有考虑了价带态介导的共振增强的理论才能定性地再现实验结果。为了更深入地了解 SPE 的特性,我们将 Kohn-Sham 计算与数值对角化精确处理的结果进行了有趣的比较,我们证明了即使对于每个量子点六个电子,也可以预期 SPE。(C) 2001 Elsevier Science Ltd.保留所有权利。[参考文献: 27]

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