A superconductor with a spin-split excitation spectrum behaves as an ideal ferromagnetic spin-injector in a tunneling junction. It was theoretically predicted that the combination of two such spin-split superconductors with independently tunable magnetizations may be used as an ideal absolute spin-valve. Here, we report on the first switchable superconducting spin-valve based on two EuS/Al bilayers coupled through an aluminum oxide tunnel barrier. The spin-valve shows a relative resistance change between the parallel and antiparallel configuration of the EuS layers up to 900% that demonstrates a highly spin-polarized current through the junction. Our device may be pivotal for realization of thermoelectric radiation detectors, a logical element for a memory cell in cryogenics, superconductor-based computers, and superconducting spintronics in general.

Toward the Absolute Spin-Valve Effect in Superconducting Tunnel Junctions

De Simoni G;Strambini E;Giazotto F
2018

Abstract

A superconductor with a spin-split excitation spectrum behaves as an ideal ferromagnetic spin-injector in a tunneling junction. It was theoretically predicted that the combination of two such spin-split superconductors with independently tunable magnetizations may be used as an ideal absolute spin-valve. Here, we report on the first switchable superconducting spin-valve based on two EuS/Al bilayers coupled through an aluminum oxide tunnel barrier. The spin-valve shows a relative resistance change between the parallel and antiparallel configuration of the EuS layers up to 900% that demonstrates a highly spin-polarized current through the junction. Our device may be pivotal for realization of thermoelectric radiation detectors, a logical element for a memory cell in cryogenics, superconductor-based computers, and superconducting spintronics in general.
2018
Istituto Nanoscienze - NANO
Inglese
18
10
6369
6374
6
https://arxiv.org/pdf/1806.03151.pdf
Sì, ma tipo non specificato
ferromagnetic insulator; magnetic memories; spin valve; spintronics; superconductivity; Tunneling magneto-resistance
3
info:eu-repo/semantics/article
262
De Simoni G.; Strambini E.; Moodera J.S.; Bergeret F.S.; Giazotto F.
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Coherent manipulation and control of heat in solid-state nanostructures: the era of coherent caloritronics
   COMANCHE
   FP7
   615187

   Thermoelectric detector based on superconductor-ferromagnet heterostructures
   SUPERTED
   H2020
   800923
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/356094
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