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首页> 外文期刊>Comptes rendus. Physique >Hyperfine interaction in InAs/GaAs self-assembled quantum dots: dynamical nuclear polarization versus spin relaxation
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Hyperfine interaction in InAs/GaAs self-assembled quantum dots: dynamical nuclear polarization versus spin relaxation

机译:InAs / GaAs自组装量子点中的超精细相互作用:动态核极化与自旋弛豫

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摘要

We report on the influence of the hyperfine interaction on the optical orientation of singly charged excitons X-+/- in self-assembled InAs/GaAs quantum dots. All measurements were carried out on individual quantum dots studied by micro-photoluminescence at low temperature. We show that the hyperfine interaction leads to an effective partial spin relaxation, under 50 kHz modulated excitation polarization, which becomes, however, strongly inhibited under steady optical pumping conditions because of dynamical nuclear polarization. This optically created magnetic-like nuclear field can become very strong (up to similar to 4 T) when it is generated in the direction opposite to a longitudinally applied field, and exhibits then a bistability regime. This effect is very well described by a theoretical model derived in a perturbative approach, which reveals the key role played by the energy cost of an electron spin flip in the total magnetic field. Finally, we emphasize the similarities and differences between X+ and X- trions with respect to the hyperfine interaction, which turn out to be in perfect agreement with the theoretical description. To cite this article: O. Krebs et al., C R. Physique 9 (2008). (C) 2008 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:我们报告了超精细相互作用对自组装InAs / GaAs量子点中单电荷激子X-+ /-光学取向的影响。所有测量都是在低温下通过微光致发光研究的单个量子点上进行的。我们表明,在50 kHz调制激发极化下,超精细相互作用会导致有效的部分自旋弛豫,但是,由于动态核极化,在稳定的光泵浦条件下,它会受到强烈抑制。当它在与纵向施加的磁场相反的方向上产生时,这种光学产生的类似核的磁场会变得非常强(最多类似于4 T),然后呈现出双稳态。通过微扰方法得出的理论模型很好地描述了这种效应,该模型揭示了电子自旋翻转的能量成本在总磁场中所起的关键作用。最后,我们强调了X +和X- Trions在超精细相互作用方面的异同,这与理论描述完全吻合。引用本文:O. Krebs等人,C R. Physique 9(2008)。 (C)2008科学研究院。由Elsevier Masson SAS发布。版权所有。

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