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 dCo=0.6 nm, dCoB=0.3 nm, and dPt=5 nm 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 pri...
The proximity coupling of a thin superconducting layer and an inhomogeneous ferromagnet can lead to ...
We present measurements of Josephson junctions containing three magnetic layers with noncollinear ma...
With the ever-increasing energy need to process big data, the realization of low-power computing tec...
We demonstrate a Josephson junction with a weak link containing two ferromagnets, with perpendicular...
© 2019 Klenov et al. We present a study of magnetic structures with controllable effective exchange ...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
We study theoretically the effects of interfacial Rashba and Dresselhaus spin-orbit coupling in supe...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
Antiferromagnets (AFMs) are promising materials for future high-frequency field-free spintronic appl...
The dependence of the critical Josephson current (I-C) and magnetoresistance (MR) on the relative or...
Transport measurements are presented on thin-film superconducting spin-valve systems, where the cont...
We test the effect of an external RF field on the switching processes of magnetic Josephson junction...
In this work I present novel experimental characterization of two different kind of unconventional f...
We report on the experimental realization of a current-controllable lateral S-(S/F)-S Josephson junc...
AbstractThe lack of dense, fast, energy efficient memory has been the main detractor for multiple su...
The proximity coupling of a thin superconducting layer and an inhomogeneous ferromagnet can lead to ...
We present measurements of Josephson junctions containing three magnetic layers with noncollinear ma...
With the ever-increasing energy need to process big data, the realization of low-power computing tec...
We demonstrate a Josephson junction with a weak link containing two ferromagnets, with perpendicular...
© 2019 Klenov et al. We present a study of magnetic structures with controllable effective exchange ...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
We study theoretically the effects of interfacial Rashba and Dresselhaus spin-orbit coupling in supe...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
Antiferromagnets (AFMs) are promising materials for future high-frequency field-free spintronic appl...
The dependence of the critical Josephson current (I-C) and magnetoresistance (MR) on the relative or...
Transport measurements are presented on thin-film superconducting spin-valve systems, where the cont...
We test the effect of an external RF field on the switching processes of magnetic Josephson junction...
In this work I present novel experimental characterization of two different kind of unconventional f...
We report on the experimental realization of a current-controllable lateral S-(S/F)-S Josephson junc...
AbstractThe lack of dense, fast, energy efficient memory has been the main detractor for multiple su...
The proximity coupling of a thin superconducting layer and an inhomogeneous ferromagnet can lead to ...
We present measurements of Josephson junctions containing three magnetic layers with noncollinear ma...
With the ever-increasing energy need to process big data, the realization of low-power computing tec...