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具有量子点的三端混合器件中的新型非局部效应。

Novel non-local effects in three-terminal hybrid devices with quantum dot.

作者信息

Michałek G, Domański T, Bułka B R, Wysokiński K I

机构信息

Institute of Molecular Physics, Polish Academy of Sciences, ul. M. Smoluchowskiego 17, 60-179 Poznań, Poland.

Institute of Physics, M. Curie-Skłodowska University, pl. M. Curie-Skłodowskiej 1, 20-031 Lublin, Poland.

出版信息

Sci Rep. 2015 Sep 29;5:14572. doi: 10.1038/srep14572.

Abstract

We predict non-local effect in the three-terminal hybrid device consisting of the quantum dot (QD) tunnel coupled to two normal and one superconducting reservoirs. It manifests itself as the negative non-local resistance and results from the competition between the ballistic electron transfer (ET) and the crossed Andreev scattering (CAR). The effect is robust both in the linear and non-linear regimes. In the latter case the screening of charges and the long-range interactions play significant role. We show that sign change of the non-local conductance depends on the subgap Shiba/Andreev states, and it takes place even in absence of the Coulomb interactions. The effect is large and can be experimentally verified using the four probe setup. Since the induced non-local voltage changes sign and magnitude upon varying the gate potential and/or coupling of the quantum dot to the superconducting lead, such measurement could hence provide a controlled and precise method to determine the positions of the Shiba/Andreev states. Our predictions ought to be contrasted with non-local effects observed hitherto in the three-terminal planar junctions where the residual negative non-local conductance has been observed at large voltages, related to the Thouless energy of quasiparticles tunneling through the superconducting slab.

摘要

我们预测在由与两个正常库和一个超导库隧穿耦合的量子点(QD)组成的三端混合器件中存在非局域效应。它表现为负的非局域电阻,是由弹道电子转移(ET)和交叉安德烈夫散射(CAR)之间的竞争导致的。该效应在线性和非线性区域都很稳健。在后一种情况下,电荷屏蔽和长程相互作用起着重要作用。我们表明,非局域电导的符号变化取决于亚能隙芝田/安德烈夫态,并且即使在没有库仑相互作用的情况下也会发生。该效应很大,可以使用四探针装置进行实验验证。由于在改变栅极电势和/或量子点与超导引线的耦合时,感应的非局域电压会改变符号和大小,因此这种测量可以提供一种可控且精确的方法来确定芝田/安德烈夫态的位置。我们的预测应该与迄今在三端平面结中观察到的非局域效应形成对比,在三端平面结中,在大电压下观察到了残余的负非局域电导,这与准粒子隧穿通过超导平板的 Thouless 能量有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9585/4586520/448d3f027a2e/srep14572-f1.jpg

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