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由非均匀磁纹理诱导的自组装涡旋晶体

Self-assembled vortex crystals induced by inhomogeneous magnetic textures.

作者信息

Menezes Raí M, Sardella Edson, Cabral Leonardo R E, de Souza Silva Clécio C

机构信息

Departamento de Física, Universidade Federal de Pernambuco, Cidade Universitária, 50670-901, Recife-PE, Brazil.

出版信息

J Phys Condens Matter. 2019 May 1;31(17):175402. doi: 10.1088/1361-648X/ab035a. Epub 2019 Jan 30.

Abstract

We investigate the self-assembly of vortices in a type-II superconducting disk subjected to highly nonuniform confining potentials produced by inhomogeneous magnetic textures. Using a series of numerical experiments performed within the Ginzburg-Landau theory, we show that vortices can arrange spontaneously in highly nonuniform, defect-free crystals, reminiscent of conformal lattices, even though the strict conditions for the conformal crystal are not fulfilled. These results contradict continuum-limit theory, which predicts that the order of a nonuniform crystal is unavoidably frustrated by the presence of topological defects. By testing different cooling routes of the superconductor, we observed several different self-assembled configurations, each of which corresponding to one in a set of allowed conformal transformations, which depends on the magnetic and thermal histories of the system.

摘要

我们研究了处于由非均匀磁纹理产生的高度非均匀约束势中的II型超导盘中涡旋的自组装。通过在金兹堡 - 朗道理论框架内进行的一系列数值实验,我们表明,即使不符合共形晶体的严格条件,涡旋也能自发排列成高度非均匀、无缺陷的晶体,类似于共形晶格。这些结果与连续极限理论相矛盾,该理论预测非均匀晶体的有序性会不可避免地因拓扑缺陷的存在而受挫。通过测试超导体的不同冷却路径,我们观察到了几种不同的自组装构型,每一种都对应于一组允许的共形变换中的一种,这取决于系统的磁历史和热历史。

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