论文标题

通过接近量子点流动的电流的统计相关性

Statistical correlations of currents flowing via proximized quantum dot

论文作者

Michałek, Grzegorz, Bułka, Bogdan R., Domański, Tadeusz, Wysokiński, Karol I.

论文摘要

流经纳米结构的电子传输的统计特性受到系统的相互作用,几何形状和/或外部电极类型的强烈影响。这些因素不仅会影响系统中引起的平均电流,而且会影响电荷及其相关性的波动。由于包含一个或多个超导电极的混合纳米系统的可能应用,对电荷流及其波动的详细理解似乎至关重要。电子之间的库仑排斥通常会强烈影响电流相关函数。在这项工作中,我们研究了通过这种相互作用的量子点与一个超导和两个正常电极接触的相互作用量子点的相关性。该设置允许分析在外部电极之间流动的电流相关性中的Andreev散射事件,尤其是使从/到不同正常电极之间的电流之间的互相关访问。我们的方法取决于主方程技术,该技术可以正确捕获库仑相互作用。我们研究有限的频率相关性并找到与高频电荷和低频极化波动有关的松弛过程。这里研究的单电子设备的多端结构允许分析渠道内和通道间相关性之间的竞争。在两个正常电极之间嵌入的相互作用量子点的适当限制,我们的计算在定量地描述了频率依赖性相关性的最新实验数据。这显示了用超导电极描述混合系统的方法的有希望的潜力。

Statistical properties of the electron transport flowing through nanostructures are strongly influenced by the interactions, geometry of the system and/or by type of the external electrodes. These factors affect not only the average current induced in the system but also contribute to fluctuations in the flux of charges and their correlations. Due to possible applications of the hybrid nano-systems, containing one or more superconducting electrodes, a detailed understanding of the flow of charge and its fluctuations seems to be of primary importance. Coulomb repulsion between electrons usually strongly affect the current-current correlation function. In this work we study the correlations in the charge flow through such interacting quantum dot contacted to one superconducting and two normal electrodes. This set-up allows for analysis of the Andreev scattering events in the correlations of currents flowing between external electrodes and, in particular, gives access to cross-correlations between currents from/to different normal electrodes. Our approach relies on the master equation technique, which properly captures the Coulomb interactions. We study the finite frequency correlations and find the relaxation processes, related to the high frequency charge and low frequency polarisation fluctuations. The multiterminal structure of here studied single electron device allows to analyze a competition between the intra- and inter-channel correlations. In the appropriate limit of the interacting quantum dot embedded between two normal electrodes our calculations quantitatively describe the recent experimental data on the frequency dependent correlations. This shows a promising potential of the method for description of the hybrid systems with superconducting electrode(s).

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