论文标题
II型超导体中涡旋诱导的陷阱和抗捕获
Disorder-induced trapping and anti-trapping of vortices in type-II superconductors
论文作者
论文摘要
我们研究具有调节障碍的超导体构成和涡旋构型的特征。使用Ginzburg-landau型理论,具有空间变化的扩散系数,我们发现并解释了涡旋 - 缺陷吸引力在外部磁场增加时对排斥的切换。结果表明,对于较弱的施加磁场,具有抑制扩散系数在区域附近的超导核具有非零的涡度,而磁场的增加可以导致零绕组数零绕组的过渡到状态。我们通过对超导体的数值模拟在超导体中进行数值模拟,在超导体中具有大量缺陷的超导体中,我们证明了这种开关现象的表现。获得的结果阐明了几类超导材料(包括一维超级晶格和纳米平方的超导体)的涡旋排列物理学的物理学,具有定期的缺陷阵列,其特征在于非磁杂质的浓度升高。
We study the features of the superconductivity nucleation and vortex configurations in superconductors with modulated disorder. Using the Ginzburg-Landau-type theory with spatially varying diffusion coefficient, we uncover and explain the switching between the vortex-defect attraction to the repulsion upon the increase in the external magnetic field. It is shown that for rather weak applied magnetic fields, a superconducting nucleus localized near the region with the suppressed diffusion coefficient possesses a nonzero vorticity whereas the increase in the magnetic field can lead to a transition into the state with zero winding number. We demonstrate the manifestations of this switching phenomenon in superconductors with a large number of defects by performing numerical simulations of the vortex structures in superconductors with periodic spatial profiles of the diffusion coefficient. The obtained results clarify the physics of the vortex arrangement in several classes of the superconducting materials including one-dimensional superlattices and nanopatterned superconductors with regular arrays of the defects characterized by the increased concentration of nonmagnetic impurities.