arXiv · cond-mat/0004054
Static and dynamic coupling transitions of vortex lattices in disordered anisotropic superconductors
Abstract
We use three-dimensional molecular dynamics simulations of magnetically interacting pancake vortices to study vortex matter in disordered, highly anisotropic materials such as BSCCO. We observe a sharp 2D-3D transition from vortex lines to decoupled pancakes as a function of relative interlayer coupling strength, with an accompanying large increase in the critical current remniscent of a second peak effect. We find that decoupled pancakes, when driven, simultaneously recouple and order into a crystalline-like state at high drives. We construct a dynamic phase diagram and show that the dynamic recoupling transition is associated with a double peak in dV/dI.
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C. J. Olson, G. T. Zimanyi, A. B. Kolton, N. Gronbech-Jensen. 2000-04-04. Static and dynamic coupling transitions of vortex lattices in disordered anisotropic superconductors. https://doi.org/10.1103/physrevlett.85.5416
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