Vortex Collisions: Crossing or Recombination?
arXiv:cond-mat/0012328 · doi:10.1103/PhysRevLett.86.5132
Abstract
We investigate the collision of two vortex lines moving with viscous dynamics and driven towards each other by an applied current. Using London theory in the approach phase we observe a non-trivial vortex conformation producing anti-parallel segments; their attractive interaction triggers a violent collision. The collision region is analyzed using the time-dependent Ginzburg-Landau equation. While we find vortices will always recombine through exchange of segments, a crossing channel appears naturally through a double collision process.
4 pages, 3 figures
Cited by in corpus (8)
- Behavior of bulk high-temperature superconductors of finite thickness subjected to crossed magnetic fields
- Reconnection Dynamics for Quantized Vortices
- Do Vortices Entangle?
- Langevin simulations of the out-of-equilibrium dynamics of the vortex glass in high-temperature superconductors
- The quest for high critical current in applied high-temperature superconductors
- Strong 3D correlations in vortex system of Bi2212:Pb
- The quark-gluon plasma, turbulence, and quantum mechanics
- Vortex deformation and breaking in superconductors: A microscopic description