Magnetically induced splitting of a giant vortex state in a mesoscopic superconducting disk
arXiv:cond-mat/0504467 · doi:10.1103/PhysRevB.71.180502
Abstract
The nucleation of superconductivity in a superconducting disk with a Co/Pt magnetic triangle was studied. We demonstrate that when the applied magnetic field is parallel to the magnetization of the triangle, the giant vortex state of vorticity three splits into three individual F0-vortices, due to a pronounced influence of the C3 symmetry of the magnetic triangle. As a result of a strong pinning of the three vortices by the triangle, their configuration remains stable in a broad range of applied magnetic fields. For sufficiently high fields, F0-vortices merge and the nucleation occurs through the giant vortex state. The theoretical analysis of this novel reentrant behaviour at the phase boundary, obtained within the Ginzburg - Landau formalism, is in excellent agreement with the experimental data.
to be published in Phys. Rev. B - Rapid. Comm
References in corpus (5)
- Experimental Evidence for Giant Vortex States in a Mesoscopic Superconducting Disk
- The interaction between a superconducting vortex and an out-of-plane magnetized ferromagnetic disk: influence of the magnet geometry
- Little-Parks effect in a superconducting loop with magnetic dot
- Little-Parks effect and multiquanta vortices in a hybrid superconductor--ferromagnet system
- Influence of the stray field of magnetic dot on the nucleation of superconductivity in a disk
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