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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Critical Current Density Through Grain Boundaries in High-Temperature Superconductors
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Critical Current Density Through Grain Boundaries in High-Temperature Superconductors

机译:高温超导体中通过晶界的临界电流密度

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摘要

In this paper, a theoretical study is proposed based on the assumption that the vortices on low-angle grain boundaries (GBs) in high-temperature superconductor (HTS) are mixed Abrikosov-Josephson (AJ) vortices. The critical current density through GB is obtained on the basis of the Bean critical model and the assumption that the periods of AJ vortices coincide with the ones of Abrikosov (A) vortices. The model also enables us to calculate J (c) of HTS with an inclined GB. In addition, the effect of strain on critical current density is also taken into account in this model by considering the strain dependence of deparing current density within GB. There is a good agreement of our results with the classical power-law expression. The model proposed in this work can be used for simultaneous studies of the effects of misorientation angles, GB-inclined angles, and applied fields on the critical current density of polycrystalline HTS.
机译:本文基于高温超导体(HTS)的低角度晶界(GBs)涡流是混合Abrikosov-Josephson(AJ)涡流的假设,提出了理论研究。通过Bean临界模型,并假设AJ涡旋的周期与Abrikosov(A)涡旋的周期一致,可以得出GB的临界电流密度。该模型还使我们能够计算具有倾斜GB的高温超导的J(c)。另外,在该模型中,通过考虑GB内降低电流密度的应变依赖性,也考虑了应变对临界电流密度的影响。我们的结果与经典幂律表述有着很好的一致性。这项工作中提出的模型可用于同时研究取向差角,GB倾斜角和施加场对多晶HTS临界电流密度的影响。

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