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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Flux pinning characteristics in ultrafine multifilamentary NbTi superconductors with different artificial pin materials
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Flux pinning characteristics in ultrafine multifilamentary NbTi superconductors with different artificial pin materials

机译:不同人造针材料的超细多丝NbTi超导体的磁通钉扎特性

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摘要

In order to improve and design critical current densities in commercial superconductors, the establishment of an artificial pinning center composite technique based on the flux pinning mechanism is desired. For that purpose, we studied the influence of different kinds of artificial pin materials (Nb, Nb-7.5wt.%Ta, Ta) on the flux pinning in multifilamentary NbTi superconductors. It was found that Nb pins act as the strongest pinners among them as predicted by difference of free energy between different kinds of superconductors estimated from the Ginzburg-Landau theory. As a result, the pinning scaling law holds true in a wide range of temperatures and magnetic fields. However, the contribution of artificial pins gradually decreased with reducing pin size. This is thought to be mainly caused by the degradation of upper critical field due to the proximity effect as well as the reduction in pin size.
机译:为了改善和设计商用超导体中的临界电流密度,需要建立一种基于磁通钉扎机制的人工钉扎中心复合技术。为此,我们研究了不同种类的人造针材料(Nb,Nb-7.5wt。%Ta,Ta)对复丝NbTi超导体中磁通钉扎的影响。根据金茨堡-朗道理论估计,根据不同种类超导体之间的自由能差异,可以发现Nb引脚是其中最强的引脚。结果,钉扎缩放定律在广泛的温度和磁场范围内适用。但是,随着引脚尺寸的减小,人造引脚的作用逐渐减小。认为这主要是由于邻近效应以及引脚尺寸的减小而导致的上临界场的劣化。

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