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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Superimposition of Different Pinning Mechanisms by Combined Additives in Sm-Ba-Cu-O Superconductors
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Superimposition of Different Pinning Mechanisms by Combined Additives in Sm-Ba-Cu-O Superconductors

机译:Sm-Ba-Cu-O超导体中组合添加剂对不同钉扎机制的叠加

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The critical current density (J_c) of melt-textured growth (MTG) RE-Ba-Cu-O (RE: rare earth elements) materials is strongly affected by the pinning mechanisms of various defects associated with microstructual variations. In this study, different additives were used, such as (a) 0.5 wt% Pt/1.0 wt% CeO_2 (A1), (b) nano sized Sm_2BaCuO_5 particles (N1), and (c) co doping of A1 and N1 (C1). The influence of individual addition of A1 and N1 species was studied. Enhancement in the J_c-H curves was shown for both types of additives, however, at different magnetic fields. Microstructural studies showed that the size of 211-particle decreased and the number of particles increased significantly in the A1 samples, which resulted in increasing dislocations and stacking fault density (known as δl pinning) associated with the 211/123 interfaces. On the other hand, in the N1 sample, nano scale compositional fluctuation of Sm_(1+x)Ba_(2-x)Cu_3O_y (where x as well as T_c varied on the nanometer scale) was proposed to result in δT_c pinning. The study shows that two types of pinning centers (δl of the A1 sample and δT_c of the N1 sample) can be superimposed by the combined addition of both additives. Thus, a high J_c at different fields can be achieved due to the activation of different pinning centers.
机译:熔融织构生长(MTG)RE-Ba-Cu-O(RE:稀土元素)材料的临界电流密度(J_c)受到与微观结构变化相关的各种缺陷的钉扎机制的强烈影响。在这项研究中,使用了不同的添加剂,例如(a)0.5 wt%的Pt / 1.0 wt%的CeO_2(A1),(b)纳米级Sm_2BaCuO_5颗粒(N1)和(c)A1和N1(C1)的共掺杂)。研究了单独添加A1和N1物种的影响。两种添加剂均显示出J_c-H曲线的增强,但是在不同的磁场下。微观结构研究表明,A1样品中211颗粒的尺寸减小,颗粒数量显着增加,这导致与211/123界面相关的位错增加和堆垛层错密度(称为δ1钉扎)。另一方面,在N1样品中,提出了Sm_(1 + x)Ba_(2-x)Cu_3O_y的纳米级成分波动(其中x以及T_c在纳米级上变化)导致δT_c钉扎。研究表明,通过同时添加两种添加剂,可以叠加两种类型的钉扎中心(A1样品的δl和N1样品的δT_c)。因此,由于不同钉扎中心的激活,可以在不同的场获得高的J_c。

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