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The critical current density of an SNS Josephson-junction in high magnetic fields. ud

机译:SNS约瑟夫森结在高磁场中的临界电流密度。 ud

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摘要

Although the functional form of the critical current density (Jc) of superconducting–normal–superconducting (SNS) Josephson-junctions (J-Js) has long been known in the very low field limit (e.g. the sinc function), includes the local properties of the junction and has been confirmed experimentally in many systems, there have been no such general solutions available for high fields. Here, we derive general analytic equations for Jc in zero field and in high fields across SNS J-Js for arbitrary resistivity of the superconductor and the normal layer which are consistent with the literature results available in limiting cases. We confirm the validity of the approach using both computational solutions to time-dependent Ginzburg–Landau (TDGL) theory applied to SNS junctions and experimental Jc data for an SNS PbBi–Cd–PbBi junction. We suggest that since SNS junctions can be considered the basic building blocks for the description of the grain boundaries of polycrystalline materials because they both provide flux-flow channels, this work may provide a mathematical framework for high Jc technological polycrystalline superconductors in high magnetic fields.
机译:尽管超导-正常-超导(SNS)的约瑟夫森结(J-Js)的临界电流密度(Jc)的函数形式早已在非常低的场限制中得到了认可(例如,sinc函数),但包括局部性质在许多系统中已通过实验证实,目前尚无此类通用解决方案可用于高场。在这里,我们推导了SNS J-Js中零场和高场中Jc的一般解析方程,其超导体和法向层的任意电阻率与有限情况下可获得的文献结果一致。我们使用针对时间依赖的Ginzburg-Landau(TDGL)理论的计算解决方案和SNS PbBi–Cd–PbBi连接的实验Jc数据,通过时间依赖的Ginzburg-Landau(TDGL)理论的两种计算解决方案,确认了该方法的有效性。我们建议,由于SNS结都可以提供通量流通道,因此可以被视为描述多晶材料晶界的基本构件,因此,这项工作可以为高磁场下高Jc技术的多晶超导体提供数学框架。

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  • 作者

    Carty G.J.; Hampshire D.P.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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