Dynamical Phase Diagrams for Moving Vortices Interacting with Periodic Pinning
arXiv:cond-mat/0205461 · doi:10.1103/PhysRevB.66.054523
Abstract
The dynamical phase diagrams for vortices in clean films, driven by an uniform force, and interacting with periodic pinning resulting from a columnar-defect lattice are investigated by numerical simulations of a London model, and other considerations. Dynamical phases are identified according to the spatial symmetry, and dynamical phase diagrams are studied as a function of the driving force magnitude and direction, and on the temperature, for typical vortex densities.
11 pages, 11 figures. Submitted to Phys. Rev. B
References in corpus (1)
Cited by in corpus (10)
- Guided vortex motion in superconductors with a square antidot lattice
- Moving Vortex Phases, Dynamical Symmetry Breaking, and Jamming for Vortices in Honeycomb Pinning Arrays
- Structural Transitions and Dynamical Regimes for Directional Locking of Particles Driven over Periodic Substrates
- Directional Locking in a 2D Yukawa Solid Modulated by a 2D Periodic Substrate
- Dynamic transition and Shapiro-step melting in a frustrated Josephson-junction array
- Switching and Jamming Transistor Effect for Vortex Matter in Honeycomb Pinning Arrays with ac Drives
- Continuous Time Monte Carlo and Spatial Ordering in Driven Lattice Gases: Application to Driven Vortices in Periodic Superconducting Networks
- Transverse Commensurability Effect for Vortices in Periodic Pinning Arrays
- Lattice Gas Dynamics; Application to Driven Vortices in Two Dimensional Superconductors
- Vortex Ordering and Dynamics on Santa Fe Artificial Ice Pinning Arrays