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Mutual-inductance route to the paramagnetic Meissner effect in two-dimensional Josephson-junction arrays - art. no. 144518

机译:二维约瑟夫逊结阵列中顺磁性迈斯纳效应的互感途径-艺术。没有。 144518

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摘要

We simulate two-dimensional Josephson-junction arrays, including full mutual-inductance effects, as they are cooled below the transition temperature in a magnetic field. We show numerical simulations of the array magnetization as a function of position, as detected by a scanning superconducting quantum interference device which is placed at a fixed height above the array. The calculated magnetization images show striking agreement with the experimental images obtained by Nielsen et al. [Phys. Rev. B 62, 14 380 (2000)]. The average array magnetization is found to be paramagnetic for many values of the applied field, confirming that paramagnetism can arise from magnetic screening in multiply connected superconductors without the presence of d-wave superconductivity. [References: 22]
机译:我们模拟了二维约瑟夫逊结阵列,包括完全互感效应,因为它们在磁场中冷却到转变温度以下。我们显示了阵列磁化强度与位置的函数关系的数值模拟,这是由放置在阵列上方固定高度的扫描超导量子干涉装置检测到的。计算出的磁化图像与Nielsen等人获得的实验图像具有惊人的一致性。 [物理B 62,14 380(2000)。发现平均阵列磁化强度对于许多施加磁场值都是顺磁性的,这证实了顺磁性可能是由多重连接的超导体中的磁屏蔽引起的,而没有d波超导性。 [参考:22]

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