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首页> 外文期刊>Scientific reports. >Enhanced flux pinning isotropy by tuned nanosized defect network in superconducting YBa2Cu3O6+x films
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Enhanced flux pinning isotropy by tuned nanosized defect network in superconducting YBa2Cu3O6+x films

机译:超导YBA2Cu3O6 + X薄膜中调谐纳米缺陷网络增强的磁通钉钉子

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摘要

Striving to improve the critical current density Jc of superconducting YBasub2/subCusub3/subOsub6+x/sub (YBCO) thin films via enhanced vortex pinning, the interplay between film growth mechanisms and the formation of nanosized defects, both natural and artificial, is systematically studied in undoped and BaZrOsub3/sub (BZO)-doped YBCO thin films. The films were grown via pulsed laser deposition (PLD), varying the crystal grain size of the targets in addition to the dopant content. The microstructure of the PLD target has been observed to have a great impact on that of the deposited thin films, including the formation of vortex pinning centers, which has direct implications on the superconducting performance, especially on the isotropy of flux pinning properties. Based on experimentally measured angular dependencies of Jc, coupled with a molecular dynamics (MD) simulation of flux pinning in the YBCO films, we present a quantitative model of how the splay and fragmentation of BZO nanorods artifically introduced into the YBCO film matrix explain the majority of the observed critical current anisotropy.
机译:努力通过增强的涡旋固定,改善超导YBA 2 Cu 3 (Ybco)薄膜的临界电流密度Jc。薄膜生长机制与纳米化缺陷之间的相互作用,自然和人工,在未掺杂的和苯卓 3 (BZO) - 掺杂的YBCO薄膜。通过脉冲激光沉积(PLD)生长薄膜,除了掺杂剂含量之外还改变靶的晶粒尺寸。已经观察到PLD靶的微观结构对沉积的薄膜的显着影响产生了很大的影响,包括形成涡旋钉扎中心,这对超导性能具有直接影响,尤其是对磁通循环性能的各向同性。基于JC的实验测量角度依赖性,与YBCO薄膜中的通量钉扎的分子动力学(MD)模拟相结合,我们介绍了如何将在YBCO膜基质中的BZO纳米棒的SPLAY和碎裂的定量模型解释了大多数观察到的临界电流各向异性。

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