论文标题
T形双量子点中的Majorana-Kondo相互作用
Majorana-Kondo interplay in T-shaped double quantum dots
论文作者
论文摘要
理论上研究了双量子点侧面连接到拓扑超导电线零能量模式的传输行为,从理论上研究了强相关性。结果表明,Majorana模式可以泄漏到整个纳米结构上,从而在两阶段的近野筛选与Majoraana Quasiparticles的半毛病性质之间产生微妙的相互作用。特别地,发现与拓扑线的耦合可在没有正常铅的情况下减少两个量子点之间的有效交换相互作用。有趣的是,当附着正常导线时,这也会导致第二阶段的围绕温度的增强。 Moreover, it is shown that the second stage of the Kondo effect can become significantly modified in one of the spin channels due to the interference with the Majorana zero-energy mode, yielding the low-temperature conductance equal to $G=G_0/4$, where $G_0 = 2e^2/h$, instead of $G=0$ in the absence of the topological superconducting wire.我们还确定了系统在参数空间中特定点中存在的非平凡旋转式$ {\ rm su}(2)$对称性,尽管缺乏旋转和电荷保守。最后,我们讨论了两种Majorana模式之间有限重叠的后果,与短Majorana电线有关。
The transport behavior of a double quantum dot side-attached to a topological superconducting wire hosting Majorana zero-energy modes is studied theoretically in the strong correlation regime. It is shown that Majorana modes can leak to the whole nanostructure, giving rise to a subtle interplay between the two-stage Kondo screening and the half-fermionic nature of Majorana quasiparticles. In particular, the coupling to the topological wire is found to reduce the effective exchange interaction between the two quantum dots in the absence of normal leads. Interestingly, it also results in an enhancement of the second-stage Kondo temperature when the normal leads are attached. Moreover, it is shown that the second stage of the Kondo effect can become significantly modified in one of the spin channels due to the interference with the Majorana zero-energy mode, yielding the low-temperature conductance equal to $G=G_0/4$, where $G_0 = 2e^2/h$, instead of $G=0$ in the absence of the topological superconducting wire. We also identify a nontrivial spin-charge ${\rm SU}(2)$ symmetry present in the system at a particular point in parameter space, despite lack of the spin nor charge conservation. Finally, we discuss the consequences of a finite overlap between two Majorana modes, as relevant for short Majorana wires.