Theory and simulations on strong pinning of vortex lines by nanoparticles
arXiv:1106.2477 · doi:10.1103/PhysRevB.84.104528
Abstract
The pinning of vortex lines by an array of nanoparticles embedded inside superconductors has become the most efficient practical way to achieve high critical currents. In this situation pinning occurs via trapping of the vortex-line segments and the critical current is determined by the typical length of the trapped segments. To verify analytical estimates and develop a quantitative description of strong pinning, we numerically simulated isolated vortex lines driven through an array of nanoparticles. We found that the critical force grows roughly as the square root of the pin density and it is strongly suppressed by thermal noise. The configurations of pinned lines are strongly anisotropic, displacements in the drive directions are much larger than in the transverse direction. Moreover, we found that the roughening index for the longitudinal displacements exceeds one. This indicates that the local stresses in the critical region increase with the total line length and the elastic description breaks down in the thermodynamic limit. Thermal noise reduces the anisotropy of displacements in the critical regions and straightens the lines.
13 pages, 11 figures, link to animation, to be published in Phys. Rev. B
References in corpus (6)
- Mechanics of Individual, Isolated Vortices in a Cuprate Superconductor
- Flux pinning in (1111) iron-pnictide superconducting crystals
- Controlled Manipulation of Individual Vortices in a Superconductor
- Numerical Calculation of the Functional renormalization group fixed-point functions at the depinning transition
- Universal Statistics of the Critical Depinning Force of Elastic Systems in Random Media
- Short time relaxation of a driven elastic string in a random medium
Cited by in corpus (25)
- Probing dynamics and pinning of single vortices in superconductors at nanometer scales
- Pinning of Domain Walls in thin Ferromagnetic Films
- Doubling the Critical Current Density of High Temperature Superconducting Coated Conductors through Proton Irradiation
- Rapid Doubling of the Critical Current of YBaCuO Coated Conductors for Viable High-Speed Industrial Processing
- Stable large-scale solver for Ginzburg-Landau equations for superconductors
- Universal Lower Limit on Vortex Creep in Superconductors
- Perspective: Challenges and Transformative Opportunities in Superconductor Vortex Physics
- Optimization of vortex pinning by nanoparticles using simulations of time-dependent Ginzburg-Landau model
- Strong-pinning regimes by spherical inclusions in anisotropic type-II superconductors
- Simulation of the vortex dynamics in a real pinning landscape of YBaCuO coated conductors
- Decoupling and tuning competing effects of different types of defects on flux creep in irradiated YBaCuO coated conductors
- Anisotropy of strong pinning in multi-band superconductors
- Campbell response in type II superconductors under strong pinning conditions
- Vortex dynamics in type II superconductors under strong pinning conditions
- Peak effect due to competing vortex ground states in superconductors with large inclusions
- Campbell penetration in the critical state of type-II superconductors
- Strong pinning theory of thermal vortex creep in type II superconductors
- Effect of random pinning on nonlinear dynamics and dissipation of a vortex driven by a strong microwave current
- Accelerated vortex dynamics across the magnetic 3D-to-2D crossover in disordered superconductors
- In-field dependences of the critical current density J in GdBaCuO coated conductors produced by Zr irradiation and post-annealing at low temperatures
- Strong pinning of propagation fronts in adverse flow
- Depinning and flow of a vortex line in an uniaxial random medium
- Anisotropic vortex motion and two-dimensional superconducting transition
- Directional driving of vortex lines with oscillating magnetic field
- Designing high-performance superconductors with nanoparticle inclusions: comparisons to strong pinning theory