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首页> 外文期刊>Physical review, B >Effects of 6 MeV proton irradiation on the vortex ensemble in BaFe2(As0.67P0.33)(2) revealed through magnetization measurements and real-space vortex imaging
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Effects of 6 MeV proton irradiation on the vortex ensemble in BaFe2(As0.67P0.33)(2) revealed through magnetization measurements and real-space vortex imaging

机译:6 MeV质子辐射对BAFE2(AS0.67P0.33)(2)涡流集合的影响通过磁化测量和实用空间涡流成像揭示

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摘要

The change in vortex ensemble in BaFe2(AS(0.67)P(0.33))(2) an isovalently doped iron-based superconductor (IBS), is studied through global magnetization measurements and single vortex imaging before and after 6 MeV proton irradiation. The field dependence of the critical current density (J(c)) is analyzed through the strong pinning model, with which the pristine sample is consistent. After the irradiation, the J(c) aberrates from the strong pinning field dependence of B-5/8 and evolves to a weaker B-1/3 dependence with an anomalous two-step behavior creating a cusplike feature. The cusp coincides with the field of the local minima in the normalized relaxation rate (5), manifested by increased pinning due to increased intervortex interactions followed by fast vortex dynamics caused by flux activation at higher fields. Furthermore, single vortex imaging reveals that while long-range triangular correlation of the Abrikosov vortex lattice is observed in pristine samples, irradiated samples exhibit a highly disordered glassy vortex state which is more densely packed with increased pinning force. These artificial defects incorporated via proton irradiation have the same pinning effect as Co doping which not only shifts the pinning force to a higher degree but also broadens its distribution, in contrast to P doping which only broadens the pinning distribution without inducing a shift. All in all, through this investigation, we provide a systematic understanding of the pinning behavior in BaFe2(AS(0.67)P(0.33))(2) through carefully controlling the defects in the system.
机译:通过全球磁化测量和6 MeV质子辐射之前和之后,通过全球磁化测量和单涡流成像来研究涡旋组合中的涡旋组合(AS(0.67)P(0.33))(2)。通过强固定模型分析临界电流密度(j(c))的场依赖性,原始样品是一致的。在辐射后,所述J(c)由B-5/8和演变的强钉扎场依赖性较弱B-三分之一依赖性与异常两步行为创建cusplike特征aberrates。 CUSP与归一化弛豫速率(5)中的局部最小值的领域一致,由于Snovertex相互作用增加而导致的循环,随后通过在较高领域的通量激活引起的快速涡旋动力学而增加。此外,单个涡流成像显示,尽管远射阿布里科索夫涡格的三角形相关原始样品中观察到,辐照样品显示出其被更密集封装的具有增加的钉扎力高度无序的玻璃状涡流状态。通过质子辐射引入的这些人工缺陷具有与CO掺杂相同的钉效效果,其不仅使钉扎力转移到更高的程度,而且还扩大其分布,与P掺杂相比,该P掺杂在不诱导偏移的情况下扩大钉扎分布。总而言之,通过这项调查,我们通过仔细控制系统中的缺陷来提供对BAFE2(如(0.67))(0.33))(2)中的钉扎行为的系统理解。

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  • 来源
    《Physical review, B 》 |2020年第22期| 共11页
  • 作者单位

    Univ Tokyo Dept Appl Phys Bunkyo Ku Tokyo 1138656 Japan;

    Univ Tokyo Dept Appl Phys Bunkyo Ku Tokyo 1138656 Japan;

    Univ Tokyo Dept Appl Phys Bunkyo Ku Tokyo 1138656 Japan;

    Univ Tokyo Dept Appl Phys Bunkyo Ku Tokyo 1138656 Japan;

    Univ Tokyo Dept Appl Phys Bunkyo Ku Tokyo 1138656 Japan;

    Natl Inst Quantum &

    Radiol Sci &

    Technol Ctr Adv Radiat Emergency Med Inage Ku 4-9-1 Anagawa Chiba 2638555 Japan;

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  • 正文语种 eng
  • 中图分类 固体物理学 ;
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