论文标题
Majorana群岛拓扑基态堕落的签名
Signatures of topological ground state degeneracy in Majorana islands
论文作者
论文摘要
我们考虑一个介绍超导岛,拥有多对Majorana零能量模式。 Majoraana岛由多个P波电线组成,由琐碎的(S波)超导骨干连接在一起,其特征是总体充电能量$ e_c $;电线通过隧道连接连接到正常金属导线。我们计算岛上的平均电荷以及非本地电导矩阵作为P-波配对差距$Δ_P$的函数,充电Energy $ e_c $和无尺寸的连接电导$ g_i $。我们发现,岛上拓扑地基堕落性的存在极大地增强了电荷的波动,并导致抑制库仑封锁作用。与常规(S波)介质超导岛相反,我们发现Majorana岛的库仑封锁电导振荡都被抑制了,无论其比率$ e_c/Δ_p$或电导率的幅度$ g_i $。我们还讨论了与所谓的拓扑杂交效应有关的发现。
We consider a mesoscopic superconducting island hosting multiple pairs of Majorana zero-energy modes. The Majorana island consists of multiple p-wave wires connected together by a trivial (s-wave) superconducting backbone and is characterized by an overall charging energy $E_C$; the wires are coupled to normal-metal leads via tunnel junctions. We calculate the average charge on the island as well as non-local conductance matrix as a function of a p-wave pairing gap $Δ_P$, charging energy $E_C$ and dimensionless junction conductances $g_i$. We find that the presence of a topological ground-state degeneracy in the island dramatically enhances charge fluctuations and leads to the suppression of Coulomb blockade effects. In contrast with conventional (s-wave) mesoscopic superconducting islands, we find that Coulomb blockade oscillations of conductance are suppressed in Majorana islands regardless of the ratio $E_C/Δ_P$ or the magnitude of the conductances $g_i$. We also discuss our findings in relation to the so-called topological Kondo effect.