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Spin relaxation of excitons in nonmagnetic quantum dots: Effect of spin coupling to magnetic semiconductor quantum dots

机译:非磁性量子点中激子的自旋弛豫:自旋耦合至磁性半导体量子点的影响

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摘要

The effect of spin coupling on the spin polarization of exciton was investigated in double quantum dot (QD) structures, one layer consisting of self-assembled nonmagnetic CdZnSe quantum QDs, and the other of CdMnSe diluted magnetic semiconductor QDs, both layers embedded in ZnSe. The magneto-photoluminescence (PL) studies on this double-layer structure were carried by detecting a single circular polarization in order to investigate the polarization dependence of the PL intensity. We have observed two well separated PL peaks in double QDs, corresponding to emissions from the CdZnSe and CdMnSe QD layers, respectively. It appears that the degree of the PL polarization emitted by the CdZnSe QDs in this double-layer structure is much larger than that observed in a single layer of nonmagnetic CdZnSe QDs. We discussed this enhancement of polarization in terms of antiparallel spin interaction between excitons localized in the nonmagnetic QDs and in the magnetic QDs.
机译:在双量子点(QD)结构中研究了自旋耦合对激子自旋极化的影响,该结构的一层由自组装的非磁性CdZnSe量子QD组成,另一层由CdMnSe稀释的磁性半导体QD组成,两层均嵌入ZnSe中。为了检测PL强度的偏振依赖性,通过检测单个圆偏振来对该双层结构进行磁光致发光(PL)研究。我们在双QD中观察到两个分离良好的PL峰,分别对应于CdZnSe和CdMnSe QD层的发射。似乎在这种双层结构中,由CdZnSe QD发出的PL极化程度比在单层非磁性CdZnSe QD中观察到的要大得多。我们根据非磁性QD和磁性QD中激子之间的反平行自旋相互作用,讨论了极化的这种增强。

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