Within the phenomenological Ginzburg-Landau (GL) theory, we investigate the vortex structure of a thin superconducting film (SC) with a regular matrix of ferromagnetic dots (FD) deposited on top of it. The vortex pinning properties of such a magnetic lattice are studied, and the field polarity depen
Vortex configurations in superconducting thin disks with finite Λ
✍ Scribed by L.R.E. Cabral; J. Albino Aguiar
- Publisher
- Elsevier Science
- Year
- 2007
- Tongue
- English
- Weight
- 180 KB
- Volume
- 460-462
- Category
- Article
- ISSN
- 0921-4534
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✦ Synopsis
Vortex configurations are studied in thin superconducting type II disks with finite K = 2k 2 /d (where d and k are the disk thickness and the London penetration depth), with an external magnetic field applied parallel to the disk symmetry axis. The screening currents were obtained numerically within the London approach. The Pearl vortex interaction was approximated by $1/r(r + K), which allows to treat the boundary condition by adding a vortex image outside the disk. Stable vortex configurations were obtained by numerically integrating the Bardeen-Stephen equation of motion. For decreasing magnetic field different sequences of vortex states develop, which depend on the R/K (R is the disk radius). Moreover, the distribution of vortices does not seem to show a strong dependence on R.
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