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Magnetization experiments on the thermal fluctuations of vortices and Cooper pairs in multilayered superconducting cuprates: how strongly coupled are the pancake vortices of the closest layers?

机译:多层超导铜酸盐中涡旋和库珀对的热涨落的磁化实验:最接近的薄层涡旋耦合程度如何?

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Abstract: To answer the question of the main title, which concerns central aspects of the vortex behavior in multi-layered high- temperature copper-oxide superconductors (HTSC), in this paper we review some of our recent measurements of the thermal fluctuation effects on the magnetization around the superconducting transition of high-quality single-crystals of different HTSC families, with a different number, N, of superconducting CuO$-2$/ layers per layering periodicity length, s. These results suggest that in highly-anisotropic multilayered HTSC the N successive pancakes in the closest N layers in s are strongly magnetically coupled but they are uncorrelated at longer distances. Therefore, they may be seen as an unique 'magnetic mille-feuilles' of N pancakes, with an effective thickness of the order of (N-1)-times the interlayer distance between the closest CuO$-2$/ layers in s. In contrast, in these highly-anisotropic HTSC the Josephson coupling between the CuO$-2$/ superconducting layers is very weak and the fluctuations of the Cooper pairs above T$-c$/ are strongly located in each CuO$-2$/ superconducting layer. !17
机译:摘要:为了回答涉及多层高温氧化铜超导体(HTSC)涡旋行为中心方面的主标题问题,在本文中,我们回顾了我们最近对热波动影响的一些测量方法。每层成层周期长度s中具有不同数量N的超导CuO $ -2 $ /层的不同HTSC系列的高质量单晶的超导转变周围的磁化强度。这些结果表明,在高度各向异性的多层HTSC中,在s中最接近的N层中的N个连续的薄煎饼是强磁耦合的,但是在更长的距离上它们是不相关的。因此,它们可以被看作是N个薄煎饼的独特“磁性千层蛋糕”,其有效厚度为(N-1)倍乘以最接近的CuO $ -2 $ / s之间的层间距离。相比之下,在这些高度各向异性的HTSC中,CuO $ -2 $ /超导层之间的约瑟夫森耦合非常弱,高于T $ -c $ /的库珀对的波动在每个CuO $ -2 $ /超导层。 !17

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