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Exotic Vortex Matter: Pancake Vortex Molecules and Fractional-Flux Molecules in Some Exotic and/or Two-Component Superconductors

机译:奇异涡旋物质:某些奇异和/或两组分超导体中的煎饼涡旋分子和分数通量分子

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摘要

The discovery of superconductivity in MgB2 and, more recently, in iron pnictides, revived the interest in two-component and other exotic superconductors, including in the field of vortex matter, as was shown recently by the discovery of “type 1.5” superconductivity. However, even some “older” exotic cuprates grown by high-pressure techniques showed interesting anomalies related to the interplay between Josephson and magnetic coupling and/or two-gap superconductivity. Here, we will present two such examples of exotic vortex matter: magnetically-coupled pancake-vortex molecules in super-multilayered cuprates, and vortex molecules composed of fractional flux quanta glued by an interband phase difference soliton, and will discuss the major differences between MgB2 and such multilayer cuprates in terms of the relative strength of the interband interaction and, respectively, in terms of the coherence and penetration lengths.
机译:在MgB2 中,以及最近在铁肽中的超导性的发现,重新激发了人们对包括涡旋物质领域的二元和其他奇异超导体的兴趣,正如最近“ 1.5型”的发现所表明的那样。超导。但是,即使是通过高压技术生长的一些“较旧的”异质铜酸盐也显示出有趣的异常现象,这些异常现象与约瑟夫森与磁耦合和/或两间隙超导之间的相互作用有关。在这里,我们将给出两个这样的外来涡旋物质的例子:超多层铜酸盐中的磁耦合煎饼涡旋分子,以及由带间相差孤子粘合的分数通量量子组成的涡旋分子,并将讨论MgB2之间的主要差异和这样的多层铜酸盐,它们的带间相互作用的相对强度以及相干长度和穿透长度均是如此。

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