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Addition of nanoparticle dispersions to enhance flux pinning of the YBa2Cu3O7-x superconductor

机译:添加纳米颗粒分散体以增强YBa2Cu3O7-x超导体的通量钉扎

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Following the discovery of type-II high-temperature superconductors in 1986 (refs 1, 2), work has proceeded to develop these materials for power applications. One of the problems, however, has been that magnetic flux is not completely expelled, but rather is contained within magnetic fluxons, whose motion prevents larger supercurrents. It is known that the critical current of these materials can be enhanced by incorporating a high density of extended defects to act as pinning centres for the fluxons(3,4). YBa2Cu3O7 (YBCO or 123) is the most promising material for such applications at higher temperatures ( liquid nitrogen) 3-13. Pinning is optimized when the size of the defects approaches the superconducting coherence length (similar to2-4 nm for YBCO at temperatures less than or equal to77 K) and when the areal number density of defects is of the order of (H/2) x 10(11) cm(-2), where H is the applied magnetic field in tesla(3,4). Such a high density has been difficult to achieve by material-processing methods that maintain a nanosize defect, except through irradiation(5). Here we report a method for achieving a dispersion of similar to8-nm-sized nanoparticles in YBCO with a high number density, which increases the critical current ( at 77 K) by a factor of two to three for high magnetic fields.
机译:继1986年发现II型高温超导体(参考文献1、2)之后,已着手开发用于电力应用的这些材料。然而,问题之一是磁通没有完全排出,而是包含在磁通中,其运动阻止了较大的超电流。众所周知,这些材料的临界电流可以通过掺入高密度的扩展缺陷来充当通量子的钉扎中心来提高(3,4)。 YBa2Cu3O7(YBCO或123)是在高温(液氮)3-13下用于此类应用的最有前途的材料。当缺陷的大小接近超导相干长度(在小于或等于77 K的温度下,对于YBCO类似于2-4 nm)并且缺陷的面数密度约为(H / 2)x 10(11)cm(-2),其中H是特斯拉(3,4)中施加的磁场。除了通过辐照外,很难通过维持纳米尺寸缺陷的材料加工方法来实现如此高的密度(5)。在这里,我们报告了一种在YBCO中以高数密度实现类似8纳米大小的纳米粒子分散的方法,该方法将高磁场下的临界电流(在77 K下)提高了2到3倍。

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