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Effects of vortex-vortex interactions on ion-track pinning inhigh-Tc superconductors

机译:涡旋相互作用对高Tc超导体离子轨迹钉扎的影响

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Many superconductor applications rely on the ability to pin vortex lattices. This ability depends on structural defects to pin individual vortices, but vortex-vortex interactions often play an important role in pinning the other vortices. Experimental progress on this complex problem can be made by introducing random arrays of well-defined pinning centers and studying the flux dynamics for a range of vortex densities (i.e., fields). The results of such studies in epitaxial Tl2Ba2CaCu2Oy films containing ion tracks show the importance of vortex-vortex interactions. As an example, the effective pinning field of the defects rises to many times the ion-dose field for temperatures well below Tc
机译:许多超导体应用依赖于固定涡旋晶格的能力。这种能力取决于固定单个涡旋的结构缺陷,但是涡旋-涡旋相互作用通常在固定其他涡旋中起重要作用。通过引入定义明确的钉扎中心的随机阵列,并研究一定范围的涡流密度(即磁场)的通量动力学,可以取得有关此复杂问题的实验进展。在包含离子轨迹的外延Tl2Ba2CaCu2Oy薄膜中进行此类研究的结果表明,涡旋-涡旋相互作用非常重要。例如,当温度远低于Tc时,缺陷的有效钉扎场会增加到离子剂量场的许多倍。

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