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Inelastic cotunneling through an interacting quantum dot with a quantum Langevin equation approach

机译:通过量子朗文方程方程通过相互作用的量子点进行非弹性共隧

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摘要

We present a theoretical analysis of several aspects of nonequilibrium cotunneling through a strong Coulomb-blockaded quantum dot (QD) subject to a finite magnetic field in the weak coupling limit. We carry this out by developing a generic quantum Heisenberg-Langevin equation approach leading to a set of Bloch dynamic equations which describe the nonequilibrium cotunneling in a convenient and compact way. This scheme not only provides analytical expressions for the relaxation and decoherence of the localized spin induced by cotunneling, but it also facilitates evaluations of the nonequilibrium magnetization, the charge current, and the spin current at arbitrary bias-voltage, magnetic field, and temperature, and their frequency-independent fluctuations as well.
机译:我们提供了对通过弱耦合极限中的有限磁场作用的强库仑阻挡量子点(QD)进行非平衡协同隧穿的几个方面的理论分析。我们通过开发通用的量子海森堡-朗格文方程方法来实现这一点,该方法导致了一组布洛赫动力学方程,该方程以便捷而紧凑的方式描述了非平衡协隧道。该方案不仅为通过共隧穿引起的局部自旋的弛豫和退相干提供了解析表达式,而且还便于评估在任意偏置电压,磁场和温度下的非平衡磁化强度,充电电流和自旋电流,以及它们与频率无关的波动。

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