材料科学
超导电性
反铁磁性
凝聚态物理
磁性
异质结
薄膜
相(物质)
产量(工程)
航程(航空)
订单(交换)
拓扑(电路)
固态
表征(材料科学)
作者
Purnima P. Balakrishnan,Hemian Yi,Zi‐Jie Yan,Wei Yuan,Andreas Suter,Christopher Jensen,Pascal Manuel,Fabio Orlandi,Τakayasu Hanashima,C. J. Kinane,Andrew J. Caruana,D. Backes,Padraic Shafer,Brian B. Maranville,Z. Salman,T. Prokscha,Cui‐Zu Chang,Alexander J. Grutter
摘要
Despite being structurally and chemically similar to the prominent superconductor FeSe, FeTe is antiferromagnetic and non-superconducting in the bulk. While it has often been presumed that the magnetism and lack of superconductivity in this material are linked, findings relating the two yield conflicting results and are complicated by phase separation. Using a range of topologically nontrivial capping layers to stabilize interfacial FeTe superconductivity, the authors show that the suppression of the antiferromagnetic state in FeTe is unlikely to be the primary factor driving superconductivity. Instead, They find evidence that subtle changes in Fe content likely drive the transition.
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