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Constructive influence of the induced electron pairing on the Kondo state

机译:感应电子对对近藤状态的建设性影响

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摘要

Superconducting order and magnetic impurities are usually detrimental to each other. We show, however, that in nanoscopic objects the induced electron pairing can have constructive influence on the Kondo effect originating from the effective screening interactions. Such situation is possible at low temperatures in the quantum dots placed between the conducting and superconducting reservoirs, where the proximity induced electron pairing cooperates with the correlations amplifying the spin-exchange potential. The emerging Abrikosov-Suhl resonance, which is observable in the Andreev conductance, can be significantly enhanced by increasing the coupling to superconducting lead. We explain this intriguing tendency within the Anderson impurity model using: the generalized Schrieffer-Wolff canonical transformation, the second order perturbative treatment of the Coulomb repulsion, and the nonperturbative numerical renormalization group calculations. We also provide hints for experimental observability of this phenomenon.
机译:超导级和磁性杂质通常彼此有害。但是,我们表明,在纳米物体中,感应电子配对可以对源自有效筛选相互作用的近藤效应产生建设性影响。在低温情况下,位于导电和超导储层之间的量子点中可能存在这种情况,其中邻近感应电子对与放大自旋交换电势的相关性协同作用。在安德列夫电导中可以观察到的新兴Abrikosov-Suhl共振可以通过增加与超导导线的耦合来显着增强。我们使用以下公式解释了安德森杂质模型中的这种有趣趋势:广义Schrieffer-Wolff正则变换,库仑斥力的二阶微扰处理以及非微扰数值重归一化组计算。我们还提供了对该现象进行实验观察的提示。

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