4.5 Article

The guidance of vortex-antivortex pairs by in-plane magnetic dipoles in a superconducting finite-size film

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IOP PUBLISHING LTD
DOI: 10.1088/0953-2048/24/2/024014

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  1. Flemish Government
  2. Flemish Science Foundation (FWO-Vl)
  3. Interuniversity Attraction Poles (IAP) Programme-Belgian State-Belgian Science Policy
  4. FWO-Vl
  5. Russian Fund for Basic Research
  6. Russian Agency of Education

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The possibility of manipulating vortex matter by using various artificial pinning arrays is of significant importance for possible applications in nano and micro fluxonics devices. By numerically solving the time-dependent Ginzburg-Landau equations, we study the vortex-antivortex (v-av) dynamics in a hybrid structure consisting of a finite-size superconductor with magnetic dipoles on top which generate v-av pairs in the presence of an external current. The v-av dynamics is analyzed for different arrangements and magnetic moments of the dipoles, as a function of angle a between the direction of the magnetic dipole and that of the Lorentz force produced by the applied current. The interplay of the attractive interaction between a v-av pair and the Lorentz force leads either to the separation of (anti) vortices and their motion in opposite directions or to their annihilation. We found a critical angle alpha(c), below which vortices and antivortices are repelled, while for larger angles they annihilate. In case of a single (few) magnetic dipole(s), this magnetic dipole induced v-av guidance is influenced by the self-interaction of the v-av pairs with their images in a finite-size sample, while for a periodic array of dipoles the guidance is determined by the interaction of a v-av pair with other dipoles and v-av pairs created by them. This effect is tunable through the external current and the magnetization and size of the magnetic dipoles.

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