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  • 标题:High Jc and low anisotropy of hydrogen doped NdFeAsO superconducting thin film
  • 本地全文:下载
  • 作者:Kazumasa Iida ; Jens Hänisch ; Keisuke Kondo
  • 期刊名称:Scientific Reports
  • 电子版ISSN:2045-2322
  • 出版年度:2021
  • 卷号:11
  • 期号:1
  • 页码:5636
  • DOI:10.1038/s41598-021-85216-3
  • 出版社:Springer Nature
  • 摘要:Abstract The recent realisations of hydrogen doped Ln FeAsO ( Ln  = Nd and Sm) superconducting epitaxial thin films call for further investigation of their structural and electrical transport properties. Here, we report on the microstructure of a NdFeAs(O,H) epitaxial thin film and its temperature, field, and orientation dependencies of the resistivity and the critical current density J c . The superconducting transition temperature T c is comparable to NdFeAs(O,F). Transmission electron microscopy investigation supported that hydrogen is homogenously substituted for oxygen. A high self-field J c of over 10 MA/cm 2 was recorded at 5 K, which is likely to be caused by a short London penetration depth. The anisotropic Ginzburg–Landau scaling for the angle dependence of J c yielded temperature-dependent scaling parameters γ J that decreased from 1.6 at 30 K to 1.3 at 5 K. This is opposite to the behaviour of NdFeAs(O,F). Additionally, γ J of NdFeAs(O,H) is smaller than that of NdFeAs(O,F). Our results indicate that heavily electron doping by means of hydrogen substitution for oxygen in Ln FeAsO is highly beneficial for achieving high J c with low anisotropy without compromising T c , which is favourable for high-field magnet applications.
  • 其他摘要:Abstract The recent realisations of hydrogen doped Ln FeAsO ( Ln  = Nd and Sm) superconducting epitaxial thin films call for further investigation of their structural and electrical transport properties. Here, we report on the microstructure of a NdFeAs(O,H) epitaxial thin film and its temperature, field, and orientation dependencies of the resistivity and the critical current density J c . The superconducting transition temperature T c is comparable to NdFeAs(O,F). Transmission electron microscopy investigation supported that hydrogen is homogenously substituted for oxygen. A high self-field J c of over 10 MA/cm 2 was recorded at 5 K, which is likely to be caused by a short London penetration depth. The anisotropic Ginzburg–Landau scaling for the angle dependence of J c yielded temperature-dependent scaling parameters γ J that decreased from 1.6 at 30 K to 1.3 at 5 K. This is opposite to the behaviour of NdFeAs(O,F). Additionally, γ J of NdFeAs(O,H) is smaller than that of NdFeAs(O,F). Our results indicate that heavily electron doping by means of hydrogen substitution for oxygen in Ln FeAsO is highly beneficial for achieving high J c with low anisotropy without compromising T c , which is favourable for high-field magnet applications.
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