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Two-stage Kondo effect in side-coupled quantum dots: Renormalized perturbative scaling theory and numerical renormalization group analysis

机译:侧耦合量子点中的两阶段近藤效应:重归一化摄动尺度理论和数值重归一化群分析

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摘要

We study numerically and analytically the dynamical (ac) conductance through a two-dot system, where only one of the dots is coupled to the leads but it is also side coupled to the other dot through an antiferro-magnetic exchange Ruderman-Kittel-Kasuya-Yoshida (RKKY) interaction. In this case, the RKKY interaction gives rise to a "two-stage Kondo effect" where the two spins are screened by two consecutive Kondo effects. We formulate a renormalized scaling theory that captures remarkably well the crossover from the strongly conductive correlated regime to the low temperature, low conductance state. Our analytical formulas agree well with our numerical renormalization group results. The frequency-dependent current noise spectrum is also discussed.
机译:我们通过两点系统进行数值和分析的动力学(ac)电导研究,其中只有一个点耦合到引线,但也通过反铁磁交换将其侧面耦合到另一个点Ruderman-Kittel-Kasuya -吉田(RKKY)互动。在这种情况下,RKKY交互作用会产生“两阶段近藤效应”,其中两个自旋被两个连续的近藤效应屏蔽。我们制定了一个重新归一化的比例缩放理论,该理论可以很好地捕获从强导电相关态到低温,低电导状态的交叉。我们的分析公式与数值归一化组的结果非常吻合。还讨论了频率相关的电流噪声频谱。

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