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Helical Majorana fermions in ... formula ... + idxy-wave topological superconductivity of doped correlated quantum spin Hall insulators

机译:公式中的螺旋马约拉纳费米子离子+掺杂相关量子自旋霍尔绝缘体的IDxy波拓扑超导性

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摘要

There has been growing interest in searching for exotic self-conjugate, charge-neutral low-energy fermionic quasi-particles, known as Majorana fermions (MFs) in solid state systems. Their signatures have been proposed and potentially observed at edges of topological superconcuctors with non-trivial topological invariant in the bulk electronic band structure. Much effort have been focused on realizing MFs in odd-parity superconductors made of strong spin-orbit coupled materials in proximity to conventional superconductors. In this paper, we propose a novel mechanism for realizing MFs in 2D spin-singlet topological superconducting state induced by doping a correlated quantum spin Hall (Kane-Mele) insulator. Via a renormalized mean-field approach, the system is found to exhibits time-reversal symmetry (TRS) breaking -wave (chiral d–wave) superconductivity near half-filling in the limit of large on-site repulsion. Surprisingly, however, at large spin-orbit coupling, the system undergoes a topological phase transition and enter into a new topological phase protected by a pseudo-spin Chern number, which can be viewed as a persistent extension of the quantum spin Hall phase upon doping. From bulk-edge correspondence, this phase is featured by the presence of two pairs of counter-propagating helical Majorana modes per edge, instead of two chiral propagating edge modes in the d + id′ superconductors.
机译:在固态系统中寻找外来的自共轭,电荷中性的低能铁电准离子(被称为马约拉那费米离子(MFs))的兴趣日益浓厚。已经提出了它们的签名,并可能在体电子能带结构中具有非平凡的拓扑不变性的拓扑超微控制器的边缘观察到它们。人们已经集中精力在由强自旋轨道耦合材料制成的奇偶校验超导体中实现接近常规超导体的MF。在本文中,我们提出了一种通过掺杂相关的量子自旋霍尔(Kane-Mele)绝缘体而在二维自旋单态拓扑超导状态下实现MF的新机制。通过重新归一化的平均场方法,发现该系统在大的现场斥力极限内表现出接近半填充的时间反转对称性(TRS)破波(手性d波)超导。然而,令人惊讶的是,在大的自旋轨道耦合下,系统经历拓扑相变并进入由伪自旋Chern数保护的新拓扑相,这可以看作是掺杂后量子自旋霍尔相的持续扩展。 。从体边缘对应,该阶段的特征是每个边缘存在两对反向传播的螺旋马约拉纳模,而不是d + id'超导体中的两个手性传播边缘模。

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