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Relaxation dynamics in type-II superconductors with point-like and correlated disorder

机译:具有点状和相关紊乱的II型超导体的弛豫动力学

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We employ an elastic line model to investigate the steady-state properties and non-equilibrium relaxation kinetics of magnetic vortex lines in disordered type-II superconductors using Langevin molecular dynamics (LMD). We extract the dependence of the mean vortex line velocity and gyration radius as well as the mean-square displacement in the steady state on the driving current, and measure the vortex density and height autocorrelations in the aging regime. We study samples with either randomly distributed point-like or columnar attractive pinning centers, which allows us to distinguish the complex relaxation features of interacting flux lines subject to extended vs. uncorrelated disorder. Additionally, we find that our new LMD findings match earlier Monte Carlo (MC) simulation data well, verifying that these two microscopically quite distinct simulation methods lead to macroscopically very similar results for non-equilibrium vortex matter.
机译:我们采用弹性线模型来研究使用Langevin分子动力学(LMD)的无序II型超导体中磁涡旋线的稳态特性和非平衡弛豫动力学。我们提取了平均涡流线速度和回转半径以及稳态下的均方位移对驱动电流的依赖性,并测量了老化过程中的涡流密度和高度自相关。我们研究了具有随机分布的点状或柱状吸引钉扎中心的样本,这使我们能够区分相互作用的通量线在扩展与非相关疾病之间的复杂弛豫特征。此外,我们发现我们的新LMD发现与早期的Monte Carlo(MC)模拟数据非常吻合,证明了这两种在微观上截然不同的模拟方法在宏观上对于非平衡涡旋物质具有非常相似的结果。

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