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首页> 外文期刊>Superconductor Science & Technology >How the macroscopic current correlates with the microscopic flux-line distribution in a type-II superconductor: an experimental study
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How the macroscopic current correlates with the microscopic flux-line distribution in a type-II superconductor: an experimental study

机译:II型超导体中的宏观电流如何与微观磁通线分布相关:一项实验研究

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摘要

We present a study of the real-space flux-line lattice (FLL) of pristine and neutron irradiated conventional type-II superconductors using scanning tunnelling microscopy. Our work is focused on the magnetic field range, where the critical current density shows a second peak as a result of neutron irradiation. Scanning tunnelling microscopy images, including more than 2000 flux lines, are used to evaluate various microscopic parameters describing the disorder of the FLL, such as the defect density, the nearest neighbour distances and correlation functions. These parameters are compared with the macroscopic critical current density of the samples. The results show a direct correlation of the micro- and macroscopic properties. We observe a clear transition from an ordered to a disordered lattice at the onset of the second peak. Moreover, we discuss the defects of the FLL and their accumulation to large clusters in the second peak region.
机译:我们使用扫描隧道显微镜对原始和中子辐照的常规II型超导体进行实空间通量线晶格(FLL)的研究。我们的工作集中在磁场范围上,在该范围内,由于中子辐照,临界电流密度显示出第二个峰值。扫描隧道显微镜图像(包括2000多个通量线)用于评估描述FLL紊乱的各种微观参数,例如缺陷密度,最近邻距离和相关函数。将这些参数与样品的宏观临界电流密度进行比较。结果表明,微观和宏观特性直接相关。我们在第二个峰开始时观察到从有序晶格到无序晶格的清晰过渡。此外,我们讨论了FLL的缺陷及其在第二个峰区域中累积到大簇中的情况。

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