反铁磁-超导体结中相互作用诱导的拓扑超导性

Senna S. Luntama, P. Törmä, J. Lado
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引用次数: 2

摘要

我们预测反铁磁绝缘体和超导体之间的结提供了一个强大的平台来创建一维拓扑超导状态。它的出现不需要固有的自旋轨道耦合或非共线磁性的存在,而仅仅是由界面孤子态上的排斥电子相互作用引起的。我们证明了拓扑超导态是由任意小耦合强度的排斥相互作用产生的,并且拓扑间隙的大小迅速饱和到母体琐碎超导体的大小。我们的研究结果提出了反铁磁绝缘体作为相互作用驱动拓扑超导的新平台。
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Interaction-induced topological superconductivity in antiferromagnet-superconductor junctions
We predict that junctions between an antiferromagnetic insulator and a superconductor provide a robust platform to create a one-dimensional topological superconducting state. Its emergence does not require the presence of intrinsic spin-orbit coupling nor non-collinear magnetism, but arises solely from repulsive electronic interactions on interfacial solitonic states. We demonstrate that a topological superconducting state is generated by repulsive interactions at arbitrarily small coupling strength, and that the size of the topological gap rapidly saturates to the one of the parent trivial superconductor. Our results put forward antiferromagnetic insulators as a new platform for interaction-driven topological superconductivity.
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