论文标题

由多次超导体中的相关性和线性缺陷驱动的拓扑超导性

Topological superconductivity driven by correlations and linear defects in multiband superconductors

论文作者

Pal, Mainak, Kreisel, Andreas, Hirschfeld, P. J.

论文摘要

为了利用较大的超导差距以及Majorana零模式对扰动的预期鲁棒性,已经提出了维持高温超导体拓扑超导的平台的几项建议。特别是,铁基材料提供了相对较大的$ T_C $和无节星的能量差距。此外,原子平坦的表面使缺陷结构的工程和随后的光谱特性测量得以揭示拓扑方面。从理论的角度来看,由于材料的相关性质和并发症是由电子结构的多频道引起的,因此特定于材料的描述是具有挑战性的。在这里,我们将两个方面都包括在现实的相互作用模型中,并发现相关本身可以导致局部磁性接近超导体表面的线性散射缺陷。使用原型电子结构在真实空间设置中使用自洽的Bogoliubov-De Gennes框架,我们允许任意磁性序列,并显示拓扑超导状态如何出现。拓扑不变和拓扑间隙的计算使我们能够为线性散射器线性链的情况绘制相图。虽然在存在自旋刺激状态的情况下进入拓扑状态不需要固有的自旋轨道耦合,但它扩大了拓扑阶段。我们讨论了超导顺序参数的三联成分的相互作用,并有效地导致旋转螺旋形,从而扩展了旋转轨道耦合项,并将我们的结果与FE(SE,TE)系统的实验努力联系起来。

There have been several proposals for platforms sustaining topological superconductivity in high temperature superconductors, in order to make use of the larger superconducting gap and the expected robustness of Majorana zero modes towards perturbations. In particular, the iron-based materials offer relatively large $T_c$ and nodeless energy gaps. In addition, atomically flat surfaces enable the engineering of defect structures and the subsequent measurement of spectroscopic properties to reveal topological aspects. From a theory perspective, a materials-specific description is challenging due to the correlated nature of the materials and complications arising from the multiband nature of the electronic structure. Here we include both aspects in realistic interacting models, and find that the correlations themselves can lead to local magnetic order close to linear potential scattering defects at the surface of the superconductor. Using a self-consistent Bogoliubov-de Gennes framework in a real-space setup using a prototype electronic structure, we allow for arbitrary magnetic orders and show how a topological superconducting state emerges. The calculation of the topological invariant and the topological gap allows us to map out the phase diagram for the case of a linear chain of potential scatterers. While intrinsic spin-orbit coupling is not needed to enter the topological state in presence of spin-spiral states, it enlarges the topological phase. We discuss the interplay of a triplet component of the superconducting order parameter and the spin spiral leading effectively to extended spin orbit coupling terms, and connect our results to experimental efforts on the Fe(Se,Te) system.

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