Spin-Valve-Controlled Triggering of Superconductivity

Author:

Neilo Alexey12ORCID,Bakurskiy Sergey12ORCID,Klenov Nikolay234ORCID,Soloviev Igor123ORCID,Kupriyanov Mikhail12ORCID

Affiliation:

1. Skobeltsyn Institute of Nuclear Physics, Lomonosov Moscow State University, Moscow 119991, Russia

2. National University of Science and Technology MISIS, Moscow 119049, Russia

3. Dukhov All-Russia Research Institute of Automatics, Moscow 101000, Russia

4. Faculty of Physics, Moscow State University, Moscow 119991, Russia

Abstract

We have studied the proximity effect in an SF1S1F2s superconducting spin valve consisting of a massive superconducting electrode (S) and a multilayer structure formed by thin ferromagnetic (F1,2) and superconducting (S1, s) layers. Within the framework of the Usadel equations, we have shown that changing the mutual orientation of the magnetization vectors of the F1,2 layers from parallel to antiparallel serves to trigger superconductivity in the outer thin s-film. We studied the changes in the pair potential in the outer s-film and found the regions of parameters with a significant spin-valve effect. The strongest effect occurs in the region of parameters where the pair-potential sign is changed in the parallel state. This feature reveals new ways to design devices with highly tunable inductance and critical current.

Funder

Russian Science Foundation

Strategic Academic Leadership Program “Priority-2030”

Foundation for the Development of Theoretical Physics and Mathematics “BASIS”

Publisher

MDPI AG

Reference54 articles.

1. Annunziata, A.J. (2010). Single-Photon Detection, Kinetic Inductance, and Non-Equilibrium Dynamics in Niobium and Niobium Nitride Superconducting Nanowires, Yale University.

2. Josephson junctions with nonsinusoidal current-phase relations based on heterostructures with a ferromagnetic spacer and their applications;Klenov;Phys. Solid State,2010

3. Spin-transfer torque magnetic random access memory (STT-MRAM);Apalkov;ACM J. Emerg. Technol. Comput. Syst. (JETC),2013

4. Nonvolatile voltage-tunable ferroelectric-superconducting quantum interference memory devices;Suleiman;Appl. Phys. Lett.,2021

5. Hybrid superconducting-magnetic memory device using competing order parameters;Baek;Nat. Commun.,2014

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