Dy和BHO添加量对MOD-YBa2Cu3O7-δ薄膜性能的影响

IF 1.8 3区 物理与天体物理 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Applied Superconductivity Pub Date : 2024-12-12 DOI:10.1109/TASC.2024.3516743
Jing Chen;Rongtie Huang;Zhiyong Liu;Yong Li;Wenjing Wu;Yuan Du;Minjuan Li;Gang Wang;Chuanbing Cai
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引用次数: 0

摘要

在制备2.4µm厚膜的过程中,证明了两步生长法可以获得高性能的YBa2Cu3O7-δ (YBCO)带,特别是在改善添加bho的YBCO带的磁钉和现场性能方面。此外,还研究了Dy掺杂对YBCO带性能的影响,以及Dy掺杂与BHO纳米晶的结合。结果表明,Dy掺杂能显著提高YBCO带的自场性能。在Dy掺杂后,加入BHO纳米晶进一步提高了250 A/12 mm-w的自场性能。与纯YBCO带相比,掺dy和添加bho的YBCO带的低温场性能明显下降。这些结果表明,不同的稀土取代对改善YBCO超导膜的自场和场内性能有不同的作用。
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Effects of Dy and BHO Additions on Performances of MOD-YBa2Cu3O7-δ Films by Two-step Method
The two-step film growth method is proved in the present work to obtain high-performance YBa 2 Cu 3 O 7-δ (YBCO) tapes in the preparation of thick films as 2.4 µm, especially in improving the flux pinning and in-field performances of the BHO-added YBCO tapes. Furthermore, the effects of Dy doping on the properties of YBCO tapes and the combination of Dy doping and BHO nanocrystal addition are investigated. The results show that Dy doping significantly enhances the self-field performance of YBCO tapes. The subsequent addition of BHO nanocrystals after Dy doping further improves the self-field performance by 250 A/12 mm-w. In contrast, the low-temperature field performance of Dy-doped and BHO-added YBCO tapes decreases significantly when compared to pure YBCO tapes. Such results suggest that different rare earth substitutions can play different roles in improving the self-field and in-field properties of YBCO superconducting films.
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来源期刊
IEEE Transactions on Applied Superconductivity
IEEE Transactions on Applied Superconductivity 工程技术-工程:电子与电气
CiteScore
3.50
自引率
33.30%
发文量
650
审稿时长
2.3 months
期刊介绍: IEEE Transactions on Applied Superconductivity (TAS) contains articles on the applications of superconductivity and other relevant technology. Electronic applications include analog and digital circuits employing thin films and active devices such as Josephson junctions. Large scale applications include magnets for power applications such as motors and generators, for magnetic resonance, for accelerators, and cable applications such as power transmission.
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