Stable ‘antiferromagnetic’ vortex lattice imprinted into a type-II superconductor

In type-II superconductors, where vortices and antivortices tend to annihilate, only a ‘ferromagnetic’ vortex lattice, with the same orientation of vortex magnetic moments, is usually formed in a homogeneous external magnetic field. Using the time-dependent Ginzburg–Landau formalism, we demonstrate...

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מידע ביבליוגרפי
Main Authors: V N Gladilin, J Tempere, J T Devreese, V V Moshchalkov
פורמט: Article
שפה:English
יצא לאור: IOP Publishing 2012-01-01
סדרה:New Journal of Physics
גישה מקוונת:https://doi.org/10.1088/1367-2630/14/10/103021
תיאור
סיכום:In type-II superconductors, where vortices and antivortices tend to annihilate, only a ‘ferromagnetic’ vortex lattice, with the same orientation of vortex magnetic moments, is usually formed in a homogeneous external magnetic field. Using the time-dependent Ginzburg–Landau formalism, we demonstrate that a checkerboard vortex–antivortex lattice (‘antiferromagnetic vortex lattice’), imprinted onto a superconducting film by a periodic array of underlying clockwise and counterclockwise microcoils generating spatially periodic positive and negative magnetic field pulses and then trapped by an array of artificial pinning centers, remains stable even after the imprinting magnetic field pulse is switched off.
ISSN:1367-2630