Kang S, Goyal A, Li J, Gapud A A, Martin P M, Heatherly L, Thompson J R, Christen D K, List F A, Paranthaman M, Lee D F
Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Science. 2006 Mar 31;311(5769):1911-4. doi: 10.1126/science.1124872.
We demonstrated short segments of a superconducting wire that meets or exceeds performance requirements for many large-scale applications of high-temperature superconducting materials, especially those requiring a high supercurrent and/or a high engineering critical current density in applied magnetic fields. The performance requirements for these varied applications were met in 3-micrometer-thick YBa2Cu3O(7-delta) films epitaxially grown via pulsed laser ablation on rolling assisted biaxially textured substrates. Enhancements of the critical current in self-field as well as excellent retention of this current in high applied magnetic fields were achieved in the thick films via incorporation of a periodic array of extended columnar defects, composed of self-aligned nanodots of nonsuperconducting material extending through the entire thickness of the film. These columnar defects are highly effective in pinning the superconducting vortices or flux lines, thereby resulting in the substantially enhanced performance of this wire.
我们展示了一种超导线的短片段,该超导线满足或超过了高温超导材料许多大规模应用的性能要求,特别是那些在应用磁场中需要高超导电流和/或高工程临界电流密度的应用。通过脉冲激光烧蚀在轧制辅助双轴织构衬底上外延生长的3微米厚的YBa2Cu3O(7-δ)薄膜满足了这些不同应用的性能要求。通过引入由延伸穿过整个薄膜厚度的非超导材料的自对准纳米点组成的周期性扩展柱状缺陷阵列,在厚膜中实现了自场临界电流的增强以及该电流在高应用磁场中的优异保持。这些柱状缺陷在钉扎超导涡旋或磁通线方面非常有效,从而导致这种导线的性能大幅提高。