论文标题

Yu-Shiba-Rusinov绑定状态之间的隧道过程

Tunneling processes between Yu-Shiba-Rusinov bound states

论文作者

Villas, A., Klees, R. L., Morrás, G., Huang, H., Ast, C. R., Rastelli, G., Belzig, W., Cuevas, J. C.

论文摘要

最近的实验报告了原子量表上Yu-Shiba-Rusinov(YSR)结合状态之间的隧道。这些实验是在扫描隧道显微镜的帮助下实现的,在该扫描隧道显微镜中,超导尖端用磁性杂质功能化,并用于探测沉积在超导底物上的另一种磁性杂质。通过这种方式,可以首次研究单个超导结合状态之间的自旋依赖性转运。在这些实验中,我们在这里介绍了YSR结合状态之间的隧道过程的全面理论研究,在该系统中,两个磁杂质与超导导线耦合。我们的理论基于一个与自旋变性的Anderson模型的组合,以描述杂质和非平衡绿色功能技术以计算电流 - 电压特性。这种组合使我们能够描述自旋依赖性转运,以使杂质之间的隧道耦合的任意强度。我们首先关注隧道制度,并表明我们的理论自然解释了由于YSR状态之间的直接和热隧道在这两种杂质之间的直接和热隧穿,因此在子段区域​​中的当前峰出现的实验观察结果。然后,我们详细研究了透明度提高的连接处的情况,透明度尚未进行实验探索,并预测由YSR状态介导的大量(多个)Andreev反射的发生,这些YSR状态在子GAP电流中产生非常丰富的结构。特别是,我们预测涉及不同杂质中YSR状态的多个Andreev反射的发生。这些过程在单突击连接中没有类似物,它们表现为当前的峰,子段电压负差分电导。

Very recent experiments have reported the tunneling between Yu-Shiba-Rusinov (YSR) bound states at the atomic scale. These experiments have been realized with the help of a scanning tunneling microscope where a superconducting tip is functionalized with a magnetic impurity and is used to probe another magnetic impurity deposited on a superconducting substrate. In this way it has become possible to study for the first time the spin-dependent transport between individual superconducting bound states. Motivated by these experiments, we present here a comprehensive theoretical study of the tunneling processes between YSR bound states in a system in which two magnetic impurities are coupled to superconducting leads. Our theory is based on a combination of an Anderson model with broken spin degeneracy to describe the impurities and nonequilibrium Green's function techniques to compute the current-voltage characteristics. This combination allows us to describe the spin-dependent transport for an arbitrary strength of the tunnel coupling between the impurities. We first focus on the tunnel regime and show that our theory naturally explains the experimental observations of the appearance of current peaks in the subgap region due to both the direct and thermal tunneling between the YSR states in both impurities. Then, we study in detail the case of junctions with increasing transparency, which has not been experimentally explored yet, and predict the occurrence of a large variety of (multiple) Andreev reflections mediated by YSR states that give rise to a very rich structure in the subgap current. In particular, we predict the occurrence of multiple Andreev reflections that involve YSR states in different impurities. These processes have no analogue in single-impurity junctions and they are manifested as current peaks with negative differential conductance for subgap voltages.

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