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Three and four-body intervortex forces in the Ginzburg-Landau models of single- and multicomponent superconductivity

机译:Ginzburg-Landau单和多分量超导模型中的三体和四体涡旋力

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摘要

A systematic numerical study of non-pairwise vortex interaction forces in the Ginzburg-Landau model for single-and multicomponent superconductivity is presented. The interactions are obtained by highly accurate numerical free energy minimization. In particular a three-body interaction is defined as the difference between the total interaction and sum of pairwise interactions in a system of three vortices and such interactions are studied for single and two-component type-1, type-2, and type-1.5 superconductors. In the investigated regimes, the three-body interaction is found to be short-range repulsive but long-range attractive in the type-1 case, zero in the critical κ (Bogomoln'y) case, attractive in the type-2 case and repulsive in the type-1.5 case. Some systems of four vortices are also studied and results indicate that four-body forces are of substantially less significance than the three-body interactions.
机译:针对单组分和多组分超导性,在Ginzburg-Landau模型中进行了非成对涡旋相互作用力的系统数值研究。相互作用是通过高度精确的数值自由能最小化获得的。尤其是,三体相互作用定义为三个旋涡系统中总相互作用与成对相互作用之和之间的差,并研究了单组分和两组分类型1,类型2和类型1.5的这种相互作用。超导体。在研究的体制中,三体相互作用被发现是短程排斥的,但在1型情况下具有远距离吸引力,在关键κ(Bogomoln'y)情况下为零,在2型情况下则具有吸引力。在1.5型情况下令人反感。还研究了一些具有四个旋涡的系统,结果表明,四体力的重要性远小于三体相互作用。

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