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Double Perovskite Heterostructures: Magnetism, Chern Bands, and Chern Insulators

机译:钙钛矿双异质结构:磁性,陈氏带和陈氏绝缘体

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Experiments demonstrating the controlled growth of oxide heterostructures have raised the prospect of realizing topologically nontrivial states of correlated electrons in low dimensions. Here, we study heterostructures consisting of {111} bilayers of double perovskites separated by inert band insulators. In bulk, these double perovskites have well-defined local moments interacting with itinerant electrons leading to high temperature ferromagnetism. Incorporating spin-orbit coupling in the two-dimensional honeycomb geometry of a {111} bilayer, we find a rich phase diagram with tunable ferromagnetic order, topological Chern bands, and a C = ±2 Chern insulator regime. Our results are of broad relevance to oxide materials such as Sr_2FeMoO_6, Ba_2FeReO_6, and Sr_2CrWO_6.
机译:证明氧化物异质结构受控生长的实验提出了实现低维相关电子的拓扑非平凡状态的前景。在这里,我们研究由惰性带状绝缘子隔开的双钙钛矿的{111}双层组成的异质结构。总体而言,这些双钙钛矿具有明确的局部矩,与流动电子相互作用,从而导致高温铁磁性。将自旋轨道耦合纳入{111}双层的二维蜂窝几何中,我们发现了具有可调铁磁阶,拓扑Chern谱带和C =±2 Chern绝缘子体系的丰富相图。我们的结果与Sr_2FeMoO_6,Ba_2FeReO_6和Sr_2CrWO_6等氧化物材料具有广泛的相关性。

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