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Using radiation damage to increase critical currents in high temperature superconductors

机译:利用辐射损伤增加高温超导体中的临界电流

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The vast potential for technological applications of high temperature superconductors can not yet be exploted because of their low critical current densities. The critical current densities in these materials at high temperatures and in high magnetic fields are largely limited by the motion of magnetic flux vortices. This motion can be inhibited through the introduction of defects into the material which can pin the vortices, therebly eliminating the electrical resistance. Radiation damage has proven to be an effective means of introducing such defects. We present the results of a study on the effects of both proton and heavy ion irradiation on single crystals of the high temperature superconductor YBa_2Cu_3O_7. The geometry and pinning strength of the defects varies greatly with the type of irradiation.
机译:高温超导体的临界电流密度低,因此尚无法发挥其在技术上的巨大潜力。这些材料在高温和高磁场下的临界电流密度在很大程度上受到磁通量涡流的运动的限制。这种运动可以通过将缺陷引入材料中来抑制,该缺陷可以钉住涡流,从而消除电阻。辐射损伤已被证明是引入此类缺陷的有效手段。我们提出了质子和重离子辐照对高温超导体YBa_2Cu_3O_7单晶的影响的研究结果。缺陷的几何形状和钉扎强度随辐照类型的不同而有很大差异。

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