Optimization of spin-triplet supercurrent in ferromagnetic Josephson junctions |
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Authors: | Klose Carolin Khaire Trupti S Wang Yixing Pratt W P Birge Norman O McMorran B J Ginley T P Borchers J A Kirby B J Maranville B B Unguris J |
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Affiliation: | Department of Physics and Astronomy, Michigan State University, East Lansing, Michigan 48824-2320, USA. |
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Abstract: | We have observed long-range spin-triplet supercurrents in Josephson junctions containing ferromagnetic (F) materials, which are generated by noncollinear magnetizations between a central Co/Ru/Co synthetic antiferromagnet and two outer thin F layers. Here we show that the spin-triplet supercurrent is enhanced up to 20 times after our samples are subject to a large in-plane field. This occurs because the synthetic antiferromagnet undergoes a "spin-flop" transition, whereby the two Co layer magnetizations end up nearly perpendicular to the magnetizations of the two thin F layers. We report direct experimental evidence for the spin-flop transition from scanning electron microscopy with polarization analysis and from spin-polarized neutron reflectometry. These results represent a first step toward experimental control of spin-triplet supercurrents. |
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