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Interfacial-Redox-Induced Tuning of Superconductivity in YBa2Cu3O7-delta

机译:YBA2Cu3O7-Delta中超导电超导调谐的界面氧化还原

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摘要

Solid-state ionic approaches for modifying ion distributions in getter/oxide heterostructures offer exciting potentials to control material properties. Here, we report a simple, scalable approach allowing for manipulation of the superconducting transition in optimally doped YBa2Cu3O7-delta (YBCO) films via a chemically driven ionic migration mechanism. Using a thin Gd capping layer of up to 20 nm deposited onto 100 nm thick epitaxial YBCO films, oxygen is found to leach from deep within the YBCO. Progressive reduction of the superconducting transition is observed, with complete suppression possible for a sufficiently thick Gd layer. These effects arise from the combined impact of redox-driven electron doping and modification of the YBCO microstructure due to oxygen migration and depletion. This work demonstrates an effective step toward total ionic tuning of superconductivity in oxides, an interface-induced effect that goes well into the quasi-bulk regime, opening-up possibilities for electric field manipulation.
机译:用于改性吸气剂/氧化物异质结构中的离子分布的固态离子方法提供了控制材料特性的激动潜力。这里,我们报告了一种简单,可扩展的方法,允许通过化学驱动的离子迁移机制在最佳掺杂的YBA2Cu3O7-Delta(YBCO)膜中进行超导转变的操纵。使用沉积在100nm厚的外延YBCO薄膜上至100nm厚的外延ybco薄膜上的薄的Gd覆盖层,发现氧气从YBCO内部浸出。观察到超导转变的渐进式减少,可以完全抑制足够厚的GD层。由于氧气迁移和耗尽,氧化还原电子掺杂和YBCO微观结构改性的组合影响出现了这些效果。这项工作证明了氧化氧化物中超导电性的总离子调整的有效步骤,界面诱导的效果进入准散装制度,电场操纵的开放可能性。

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