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Charge and current beats in T-shaped qubit-detector systems

机译:T形量子位检测器系统中的电荷和电流脉动

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摘要

The time evolution of a charge qubit coupled electrostatically with different detectors in the forms of single, double and triple quantum dot linear systems in the T-shaped configuration between two reservoirs is theoretically considered. The correspondence between the qubit quantum dot oscillations and the detector current is studied for different values of the inter dot tunneling amplitudes and the qubit-detector interaction strength. We have found that even for a qubit coupled with a single QD detector, the coherent beat patterns appear in the oscillations of the qubit charge. This effect is more evident for a qubit coupled with double or triple-QD detectors. The beats can be also observed in both the detector current and the detector quantum dot occupations. Moreover, in the presence of beats the qubit oscillations hold longer in time in comparison with the beats free systems with monotonously decaying oscillations. The dependence of the qubit dynamics on different initial occupations of the detector sites (memory effect) is also analyzed. (C) 2015 Elsevier B.V. All rights reserved.
机译:从理论上考虑了在两个储层之间以T形配置以单,双和三量子点线性系统形式与不同检测器静电耦合的电荷量子位的时间演化。研究了量子点量子点振荡和检测器电流之间的对应关系,以了解点间隧穿幅度和量子位-检测器相互作用强度的不同值。我们已经发现,即使对于与单个QD检测器耦合的量子比特,相干的拍子模式也会出现在量子比特电荷的振荡中。对于结合了双或三重QD检测器的量子比特,这种效果更加明显。在检测器电流和检测器量子点占用中也可以观察到节拍。此外,与具有单调衰减振荡的无拍频系统相比,在有拍频的情况下,量子位振荡在时间上保持更长的时间。还分析了量子位动力学对检测器站点不同初始占用(内存效应)的依赖性。 (C)2015 Elsevier B.V.保留所有权利。

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