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RKKY interaction between quantum dot spins tuned by the quantum dot level

机译:通过量子点能级调整的量子点自旋之间的RKKY相互作用

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摘要

We have investigated the Ruderman-Kittel-Kasuya-Yosida (RKKY) interaction between two quantum dot (QD) spins mediated by a two-dimensional electron gas in the simplest case. The oscillation of the RKKY interaction versus the distance between the two QDs consists of two ingredients with different periods. The RKKY interaction undulates with the variation of the singly occupied QD level, which provides us a way to tune the magnitude and the sign of the RKKY interaction by pushing the QD level up and down. These conclusions are quite different from the usual result obtained by replacing the s-d exchange interaction with its value at the Fermi level. The influence on the RKKY interaction brought about under more realistic conditions is also discussed.
机译:在最简单的情况下,我们已经研究了二维电子气介导的两个量子点(QD)自旋之间的Ruderman-Kittel-Kasuya-Yosida(RKKY)相互作用。 RKKY交互作用的振动与两个QD之间的距离的关系由两种具有不同周期的成分组成。 RKKY交互随着单个占据的QD级别的变化而波动,这为我们提供了一种通过向上和向下推动QD级别来调整RKKY交互的幅度和符号的方法。这些结论与通过用费米能级的值取代s-d交换相互作用而获得的通常结果完全不同。还讨论了在更现实的条件下对RKKY交互的影响。

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