Abstract
In submicron superconducting squares in a homogeneous magnetic field, Ginzburg-Landau theory may admit solutions of the vortex-antivortex type, conforming to the symmetry of the sample [L.F. Chibotaru, Nature (London) 408, 833 (2000)NATUAS0028-083610.1038/35048521]. Here we show that these fascinating, but never experimentally observed states, can be enforced by artificial fourfold pinning, with their diagnostic features enhanced by orders of magnitude. The second-order nucleation of vortex-antivortex molecules can be driven by either temperature or an applied magnetic field, with stable asymmetric vortex-antivortex equilibria found on its path. © 2006 The American Physical Society.
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CITATION STYLE
Geurts, R., Milošević, M. V., & Peeters, F. M. (2006). Symmetric and asymmetric vortex-antivortex molecules in a fourfold superconducting geometry. Physical Review Letters, 97(13). https://doi.org/10.1103/PhysRevLett.97.137002
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