超导电性
材料科学
凝聚态物理
磁通钉扎
硫系化合物
导线
导电体
磁场
高温超导
光电子学
复合材料
物理
量子力学
作者
Weidong Si,Juan Zhou,Qing Jie,Ivo Dimitrov,Vyacheslav Solovyov,P. D. Johnson,J. Jaroszyński,Vladimir Matias,Chris J. Sheehan,Qiang Li
摘要
The high upper critical field characteristic of the recently discovered iron-based superconducting chalcogenides opens the possibility of developing a new type of non-oxide high-field superconducting wires. In this work, we utilize a buffered metal template on which we grow a textured FeSe0.5Te0.5 layer, an approach developed originally for high temperature superconducting coated conductors. These tapes carry high critical current densities (>1 × 104 A/cm2) at about 4.2 K under magnetic field as high as 25 T, which are nearly isotropic to the field direction. This demonstrates a very promising future for iron chalcogenides for high field applications at liquid helium temperatures. Flux pinning force analysis indicates a point defect pinning mechanism, creating prospects for a straightforward approach to conductor optimization.
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