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Extremely long-range, high-temperature Josephson coupling across a half-metallic ferromagnet

Authors :
Sergio Valencia
José M. González-Calbet
A. Rivera
V. Rouco
Xavier Palermo
A. Balan
Alexander Buzdin
Mariona Cabero
Anke Sander
Cheryl Feuillet-Palma
Salvatore Mesoraca
Javier Tornos
Jesus Santamaria
Mirko Rocci
D. Sanchez-Manzano
Mar García-Hernández
F. Cuéllar
Javier Garcia-Barriocanal
Federico Mompean
C. Leon
Gloria Orfila
Jerome Lesueur
Javier E. Villegas
Lourdes Marcano
Nicolas Bergeal
Fernando Gallego
Source :
Repositorio Institucional del Instituto Madrileño de Estudios Avanzados en Nanociencia, instname, Nature Materials
Publication Year :
2020

Abstract

The Josephson effect results from the coupling of two superconductors across a spacer such as an insulator, a normal metal or a ferromagnet to yield a phase coherent quantum state. However, in junctions with ferromagnetic spacers, very long-range Josephson effects have remained elusive. Here we demonstrate extremely long-range (micrometric) high-temperature (tens of kelvins) Josephson coupling across the half-metallic manganite La0.7Sr0.3MnO3 combined with the superconducting cuprate YBa2Cu3O7. These planar junctions, in addition to large critical currents, display the hallmarks of Josephson physics, such as critical current oscillations driven by magnetic flux quantization and quantum phase locking effects under microwave excitation (Shapiro steps). The latter display an anomalous doubling of the Josephson frequency predicted by several theories. In addition to its fundamental interest, the marriage between high-temperature, dissipationless quantum coherent transport and full spin polarization brings opportunities for the practical realization of superconducting spintronics, and opens new perspectives for quantum computing. Josephson coupling over micrometres and at tens of kelvins is demonstrated across the half-metallic manganite La0.7Sr0.3MnO3 combined with the superconducting cuprate YBa2Cu3O7.

Details

ISSN :
14764660
Volume :
21
Issue :
2
Database :
OpenAIRE
Journal :
Nature materials
Accession number :
edsair.doi.dedup.....82cab24a37712e7df38578dea5ad80e0