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Frustration-driven C 4 symmetric order in a naturally-heterostructured superconductor Sr 2 VO 3 FeAs

机译:天然异质结构超导体Sr 2 VO 3 FeAs中受挫折驱动的C 4对称顺序

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A subtle balance between competing interactions in iron-based superconductors (FeSCs) can be tipped by additional interfacial interactions in a heterostructure, often inducing exotic phases with unprecedented properties. Particularly when the proximity-coupled layer is magnetically active, rich phase diagrams are expected in FeSCs, but this has not been explored yet. Here, using high-accuracy 75As and 51V nuclear magnetic resonance measurements, we investigate an electronic phase that emerges in the FeAs layer below T 0?~?155?K of Sr2VO3FeAs, a naturally assembled heterostructure of an FeSC and a Mott-insulating vanadium oxide. We find that frustration of the otherwise dominant Fe stripe and V Neel fluctuations via interfacial coupling induces a charge/orbital order in the FeAs layers, without either static magnetism or broken C 4 symmetry, while suppressing the Neel antiferromagnetism in the SrVO3 layers. These findings demonstrate that the magnetic proximity coupling stabilizes a hidden order in FeSCs, which may also apply to other strongly correlated heterostructures.
机译:铁基超导体(FeSC)中竞争性相互作用之间的微妙平衡可以通过异质结构中的其他界面相互作用来解决,通常会诱导出具有前所未有性能的奇异相。特别是当邻近耦合层具有磁性时,FeSCs中会出现丰富的相图,但尚未对此进行探索。在这里,我们使用高精度的75As和51V核磁共振测量,研究了在Sr2VO3FeAs的T 0?〜?155?K以下的FeAs层中出现的电子相,FeSC的自然组装异质结构和Mott绝缘钒氧化物。我们发现,通过界面耦合对否则占优势的Fe条纹和V Neel波动的挫败会在FeAs层中引起电荷/轨道顺序,而不会产生静态磁性或破坏C 4对称性,同时会抑制SrVO3层中的Neel反铁磁性。这些发现表明,磁性接近耦合稳定了FeSCs中的隐藏顺序,这也可能适用于其他高度相关的异质结构。

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