首页> 美国卫生研究院文献>Nature Communications >Strongly enhanced flux pinning in one-step deposition of BaFe2(As0.66P0.33)2 superconductor films with uniformly dispersed BaZrO3 nanoparticles
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Strongly enhanced flux pinning in one-step deposition of BaFe2(As0.66P0.33)2 superconductor films with uniformly dispersed BaZrO3 nanoparticles

机译:具有均匀分散的BaZrO3纳米粒子的BaFe2(As0.66P0.33)2超导薄膜的一步沉积中的助焊剂固定作用得到了大大增强

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摘要

The high upper critical field and low anisotropy of the iron-based superconductor BaFe2As2 make it promising for its use in the construction of superconducting magnets. However, its critical current density in high magnetic fields needs to be improved. Here we demonstrate a simple, one-step and industrially scalable means of achieving just this. We show that introducing controlled amounts of uniformly dispersed BaZrO3 nanoparticles into carrier-doped BaFe2As2 significantly improves its superconducting performance without degrading its structural or superconducting properties. Our BaFe2(As0.66P0.33)2 films also exhibit an increase in both the irreversibility line and critical current density at all magnetic-field orientations. These films exhibit nearly isotropic critical current densities in excess of 1.5 MA cm−2 at 15 K and 1 T—seven times higher than previously reported for BaFe2As2 films. The vortex-pinning force in these films reaches ~59 GN m−3 at 5 K and 3–9 T, substantially higher than that of the conventional Nb3Sn wire.
机译:铁基超导体BaFe2As2的高上临界场和低各向异性使得它有望用于超导磁体的构造。但是,其在高磁场中的临界电流密度需要提高。在这里,我们演示了实现这一目标的简单,一步一步且可在工业上扩展的方法。我们表明,将受控量的均匀分散的BaZrO3纳米颗粒引入掺杂有载体的BaFe2As2可以显着提高其超导性能,而不会降低其结构或超导性能。我们的BaFe2(As0.66P0.33)2膜在所有磁场方向上的不可逆线和临界电流密度也都有所增加。这些膜在15 K和1 T下表现出几乎各向同性的临界电流密度,超过1.5 MA cm -2 ,比以前报道的BaFe2As2膜高七倍。这些薄膜的涡旋钉扎力在5 K和3-9 T时达到〜59 GN m -3 ,大大高于传统的Nb3Sn焊丝。

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