arXiv · 1208.5932
Josephson $φ$-junctions based on structures with complex normal/ferromagnet bilayer
Abstract
We demonstrate that Josephson devices with nontrivial phase difference $% 0<φ_g <π$ in the ground state can be realized in structures composed from longitudinally oriented normal metal (N) and ferromagnet (F) films in the weak link region. Oscillatory coupling across F-layer makes the first harmonic in the current-phase relation relatively small, while coupling across N-layer provides negative sign of the second harmonic. To derive quantitative criteria for a $φ$-junction, we have solved two-dimensional boundary-value problem in the frame of Usadel equations for overlap and ramp geometries of S-NF-S structures. Our numerical estimates show that $φ$-junctions can be fabricated using up-to-date technology.
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S. V. Bakurskiy, N. V. Klenov, T. Yu. Karminskaya, M. Yu. Kupriyanov, A. A. Golubov. 2012-08-29. Josephson $φ$-junctions based on structures with complex normal/ferromagnet bilayer. https://doi.org/10.1088/0953-2048%2F26%2F1%2F015005
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