Electromagnetic interaction of vortices in layered superconducting structures

A. Buzdin, D. Feinberg
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引用次数: 65

Abstract

A multilayered superconducting system with a purely electromagnetic coupling between layers is considered. A general formula is derived for the energy of an arbitrary configuration of point vortices localized in the layers. It is shown that the interaction energy of a vortex and an antivortex located on the same layer depends logarithmically on their distance for large distances. The structure of a vortex line in perpendicular fields is also considered. Two different regimes appear, depending on the ratio of the interlayer distance d to the effective one-layer screening length λ eff = λ 2L/ d0 where λL is the London screening length in the layers and do the layer thickness. Due to the temperature dependence of λL, the behaviour of the first critical field H c1 is expected to show a crossover below Tc.
层状超导结构中涡旋的电磁相互作用
考虑了具有层间纯电磁耦合的多层超导系统。导出了层内点涡任意组态能量的一般公式。结果表明,在较大距离下,同一层上的涡旋和反涡旋的相互作用能与它们的距离成对数关系。本文还考虑了垂直场中涡线的结构。根据层间距离d与有效单层筛分长度λ eff = λ 2L/ d0的比值,出现了两种不同的情况,其中λ l是层中的伦敦筛分长度,λ l是层厚度。由于λL的温度依赖性,预计第一临界场hc1的行为将在Tc以下显示交叉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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