Abrikosov vortices in SF bilayers


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Abstract

We study the spatial distribution of supercurrent circulated around an Abrikosov vortex in an SF bilayer in perpendicular magnetic field. Within the dirty limit regime and circular cell approximation for the vortex lattice, we derive the conditions when the Usadel equations the F-layer can be solved analytically. Using the obtained solutions, we demonstrate the possibility of reversal of direction of proximity induced supercurrents around the vortex in the F-layer compared to that in the S-layer. The direction of currents can be controlled either by varying transparency of the SF interface or by changing an exchange field in a ferromagnet. We argue that the origin of this effect is due the phase shift between singlet and triplet order parameter components induced in the F-layer. Possible ways of experimental detection of the predicted effect are discussed.

About the authors

A. A. Golubov

Moscow Institute of Physics and Technology (State University); Faculty of Science and Technology and MESA+, Institute for Nanotechnology

Email: mkupr@pn.sinp.msu.ru
Russian Federation, Dolgoprudnyi, Moscow region, 141700; Enschede, 7500 AE

M. Yu. Kupriyanov

Moscow Institute of Physics and Technology (State University); Skobeltsyn Institute of Nuclear Physics; National University of Science and Technology MISIS

Author for correspondence.
Email: mkupr@pn.sinp.msu.ru
Russian Federation, Dolgoprudnyi, Moscow region, 141700; Moscow, 119991; Moscow, 119049

M. M. Khapaev

Department of Numerical Methods

Email: mkupr@pn.sinp.msu.ru
Russian Federation, Moscow, 119992

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