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Andreev reflection and Aharonov-Bohm oscillations through a parallel-coupled double quantum dot with spin-flip scattering

机译:通过具有自旋翻转散射的平行耦合双量子点的Andreev反射和Aharonov-Bohm振荡

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摘要

Using nonequilibrium Green's function techniques, we investigate Andreev reflection and Aharonov-Bohm oscillations through a parallel-coupled double quantum dot connected with a ferromagnetic lead and a superconductor lead. The possibility of controlling Andreev reflection and Aharonov-Bohm oscillations of the system is explored by tuning the interdot coupling, the gate voltage, the magnetic flux, and the intradot spin-flip scattering. When the spin-flip scattering increases, Fano resonant peaks resulting from the asymmetrical levels of the two quantum dots begin to split, and Aharonov-Bohm oscillations are suppressed. Due to the interdot coupling, one strongly and one weakly coupled state of the system can be formed. The magnetic flux can exchange the function of the two states, which leads to a swap effect.
机译:使用非平衡格林函数技术,我们通过与铁磁引线和超导体引线相连的双耦合双量子点研究了安德列夫反射和阿哈罗诺夫-波姆振荡。通过调整点间耦合,栅极电压,磁通量和点内自旋翻转散射,探索了控制系统的Andreev反射和Aharonov-Bohm振荡的可能性。当自旋翻转散射增加时,由两个量子点的不对称能级引起的Fano共振峰开始分裂,并且Aharonov-Bohm振荡得到抑制。由于点间耦合,可以形成系统的一种强耦合状态和一种弱耦合状态。磁通量可以交换两种状态的功能,从而导致交换效应。

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