Siuda Emil, Weymann Ireneusz
Institute of Spintronics and Quantum Information, Faculty of Physics and Astronomy, Adam Mickiewicz University, ul. Uniwersytetu Poznańskiego 2, 61-614, Poznań, Poland.
Sci Rep. 2025 Jul 14;15(1):25349. doi: 10.1038/s41598-025-10867-5.
We examine the interplay between the Nagaoka ferromagnetism and superconducting pairing correlations in a two-by-two quantum dot array proximitized by an s-wave superconductor. Focusing on the subgap regime, we determine the phase diagram of the system, demonstrating that Nagaoka ferromagnetism becomes greatly affected by the presence of superconductor and, depending on the strength of direct and crossed Andreev reflections, can be fully suppressed. This happens at some critical value of the induced on-dot pairing potential, for which we provide the corresponding analytical formulas in the limit of large Coulomb correlations. Moreover, we also shed light on the competition between Nagaoka ferromagnetism and superconductivity visible in the transport characteristics. Using the real-time diagrammatic technique, we determine the nonequilibrium current and differential conductance assuming that the quantum dot plaquette is weakly coupled to external lead that can be used to probe the system's properties. We not only uncover the impact of Nagaoka ferromagnetism on the Andreev current and differential conductance, but also demonstrate a spin quintuplet blockade of the Andreev transport.
我们研究了由s波超导体近邻耦合的二乘二量子点阵列中长冈铁磁性与超导配对关联之间的相互作用。聚焦于能隙以下区域,我们确定了该系统的相图,表明长冈铁磁性会受到超导体存在的极大影响,并且根据直接和交叉安德烈夫反射的强度,它可能会被完全抑制。这种情况发生在诱导的量子点上配对势的某个临界值处,对于该临界值,我们在大库仑关联极限下给出了相应的解析公式。此外,我们还揭示了在输运特性中可见的长冈铁磁性与超导性之间的竞争。使用实时图解技术,我们在假设量子点格子与可用于探测系统性质的外部引线弱耦合的情况下,确定了非平衡电流和微分电导。我们不仅揭示了长冈铁磁性对安德烈夫电流和微分电导的影响,还证明了安德烈夫输运的自旋五重态阻塞。