...
首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Proximity effect current strengths in NbTi multifilamentary samples with and without Nb barriers and processed under various conditions
【24h】

Proximity effect current strengths in NbTi multifilamentary samples with and without Nb barriers and processed under various conditions

机译:具有和不具有Nb阻挡层且在各种条件下加工的NbTi复丝样品中的邻近效应电流强度

获取原文
获取原文并翻译 | 示例
           

摘要

Conventional magnetization measurements of proximity effect (PE) coupling in superconducting (S) multifilamentary (MF) strands have been made, and a previously developed technique has been used to quantify the coupling strength in terms of a PE coupling supercurrent, J/sub cn/. This quantity has been determined for a number of MF strand types processed under various conditions. All are NbTi/Cu MF composites in some of which the NbTi filaments were surrounded by Nb "barriers", while in the others they were not. The magnetic field dependence of J/sub cn/ was also explored. The measured differences in J/sub cn/ are attributed to differences in the properties of the filament/matrix (normal metal, N) interface treated as a S1-S2-N trilayer. These results, together with those of an earlier series of experiments confirm that PE coupling between the filament and the matrix, and hence the normal-state coherence length, /spl xi//sub N/, is enhanced by the presence of a Nb (S2) barrier; and furthermore that the field-dependent coupling strength, gauged in terms of J/sub cn/ or /spl xi//sub N/, depends on the thickness of that barrier. It is demonstrated that magnetic PE-coupling studies not only provide a technique for extracting /spl xi//sub N/, a quantity central to artificial pinning center (APC) design, but also may help in the investigation of S-N boundary conditions in the clean limit.
机译:已经对超导(S)多丝(MF)股线中的邻近效应(PE)耦合进行了常规磁化测量,并使用了先前开发的技术来量化PE耦合超电流J / sub cn /的耦合强度。 。已针对在各种条件下加工的多种MF链类型确定了此数量。它们都是NbTi / Cu MF复合材料,其中一些NbTi丝被Nb“势垒”包围,而在另一些中则没有。还研究了J / sub cn /的磁场依赖性。 J / sub cn /的测量差异归因于被视为S1-S2-N三层的灯丝/基体(普通金属,N)界面的特性差异。这些结果以及较早系列实验的结果证实,通过存在Nb,可以增强灯丝和基体之间的PE耦合,从而提高了正常状态的相干长度/ spl xi // sub N /。 S2)屏障;此外,以J / sub cn /或/ spl xi // sub N /来衡量的取决于场的耦合强度取决于该势垒的厚度。结果表明,磁性PE耦合研究不仅提供了提取/ spl xi // sub N /(一种技术是人工钉扎中心(APC)设计的中心)的技术,而且还可能有助于研究SN边界条件。清洁极限。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号