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Boundary-Obstructed Topological High- T c Superconductivity in Iron Pnictides

机译:铁铅界障碍拓扑高速超导

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Nontrivial topology and unconventional pairing are two central guiding principles in the contemporary search for and analysis of superconducting materials and heterostructure compounds. Previously, a topological superconductor has been predominantly conceived to result from a topologically nontrivial band subject to an intrinsic or external superconducting proximity effect. Here, we propose a new class of topological superconductors that are uniquely induced by unconventional pairing. They exhibit a boundary-obstructed higher-order topological character and, depending on their dimensionality, feature unprecedently robust Majorana bound states or hinge modes protected by chiral symmetry. We predict the 112 family of iron pnictides, such as Ca1?xLaxFeAs2, to be highly suited material candidates for our proposal, which can be tested by edge spectroscopy. Because of the boundary obstruction, the topologically nontrivial feature of the 112 pnictides does not reveal itself for a bulk-only torus band analysis without boundaries, and as such, it had evaded previous investigations. Our proposal not only opens a new arena for highly stable Majorana modes in high-temperature superconductors but also provides the smoking gun for extended s-wave order in the iron pnictides.
机译:非动力拓扑和非传统配对是在当代搜索和分析超导材料和异质结构化合物中的两个中央指导原理。以前,主要构思了拓扑超导体,以由拓扑非计性带受到固有的或外部超导邻近效应的影响。在这里,我们提出了一类新的拓扑超导体,这些超导体是独一无二的配对诱导的。它们表现出边界阻碍的高阶拓扑结构,具体取决于它们的维度,特征是由手性对称保护的不可逼迫的Majorana绑定状态或铰链模式。我们预测了112个铁癌,例如Ca1?Xlaxfeas2,为我们的提案进行高度适用的材料候选者,其可以通过边缘光谱来测试。由于边界障碍,112个突出的拓扑非常规特征并没有为没有边界的唯一的圆环频带分析而没有揭示自己,因此它已经逃避了先前的研究。我们的建议不仅为高温超导体中的高度稳定的Makeana模式开辟了新的舞台,而且还为铁杆延伸的S-Wave订单提供了吸烟枪。

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