论文标题
增强晶界处的接近效应,以增强BA1-XKXFE2AS2超导体中的谷物间超电流
Strengthened proximity effect at grain boundaries to enhance inter-grain supercurrent in Ba1-xKxFe2As2 superconductors
论文作者
论文摘要
基于铁的超导体由于其出色的高场特性而具有高功率应用的巨大潜力。增强基于铁的超导电线的临界电流密度的中心问题之一是揭示晶界在超潮流传输中的作用和局限性。在这里,我们通过将BA1-XKXFE2AS2超导体掺入较宽范围(0.25 <x <0.598),从而对晶界的电子性质进行了细微调整。发现晶粒内的Jcintra峰接近x〜0.287,而晶粒间的JCinter的最大值约为x〜0.458。值得注意的是,定义为JCinter/Jcintra的晶界透明参数以掺杂而单调地升高。通过详细的显微镜分析,我们提出,通常存在于晶界和相邻晶粒处的FEAS隔离阶段构成了超导型金属 - 金属 - 渗透导体(SNS)Josephson连接,在运输超电流中起着关键作用。提出了基于接近效应和SNS连接的三明治模型,以很好地解释我们的数据。已经发现,超导晶粒在很大程度上增强了接近效应,因此增强了晶粒间超流。我们的结果将提供新的见解和灵感来改善晶界工程的基于铁的超导体的应用参数。
Iron-based superconductors have great potential for high-power applications due to their prominent high-field properties. One of the central issues in enhancing the critical current density of iron-based superconducting wires is to reveal the roles and limitations of grain boundaries in supercurrent transport. Here, we finely tuned the electronic properties of grain boundaries by doping Ba1-xKxFe2As2 superconductors in a wide range (0.25<x<0.598). It is found that the intra-grain Jcintra peaks near x~0.287, while the inter-grain Jcinter has a maximum at about x~0.458. Remarkably, the grain boundary transparency parameter defined as Jcinter/Jcintra rises monotonically with doping. Through detailed microscopic analysis, we suggest that the FeAs segregation phase commonly existing at grain boundaries and the adjacent grains constitute superconductor-normal metal-superconductor (SNS) Josephson junctions which play a key role in transporting supercurrent. A sandwich model based on the proximity effect and the SNS junction is proposed to well interpret our data. It is found that overdoping in superconducting grains largely strengthens the proximity effect and consequently enhances the intergrain supercurrent. Our results will shed new insights and inspirations for improving the application parameters of iron-based superconductors by grain boundary engineering.