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Spin-valve Josephson junctions with perpendicular magnetic anisotropy for cryogenic memory

机译:具有垂直磁各向异性的自旋阀约瑟夫森结,用于低温记忆

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We demonstrate a Josephson junction with a weak link containing two ferromagnets with perpendicular magnetic anisotropy and independent switching fields in which the critical current can be set by the mutual orientation of the two layers. Such pseudospin-valve Josephson junctions are a candidate cryogenic memory in an all superconducting computational scheme. Here, we use Pt/Co/Pt/CoB/Pt as the weak link of the junction with d(Co) = 0:6nm; d(CoB) = 0:3 nm, and d(Pt) = 5nm and obtain a 60% change in the critical current for the two magnetization configurations of the pseudospin-valve. Ferromagnets with perpendicular magnetic anisotropy have advantages over magnetization in-plane systems, which have been exclusively considered at this point, as, in principle, the magnetization and magnetic switching of layers in the junction should not affect the in-plane magnetic flux. Published under license by AIP Publishing.
机译:我们展示了一个约瑟夫森结,其弱链接包含两个具有垂直磁各向异性和独立开关场的铁磁体,其中临界电流可以通过两层的相互定向来设置。在所有超导计算方案中,此类伪自旋阀约瑟夫森结是候选低温存储器。在这里,我们使用Pt / Co / Pt / CoB / Pt作为d(Co)= 0:6nm的结的弱连接。 d(CoB)= 0:3 nm,d(Pt)= 5nm,对于伪自旋阀的两种磁化配置,临界电流变化60%。具有垂直磁各向异性的铁磁体具有优于磁化平面系统的优点,这在这一点上已经被专门考虑,因为,原则上,结中各层的磁化和磁转换不应影响平面内磁通量。由AIP Publishing授权发布。

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