Macroscopic quantum tunnelling in spin filter ferromagnetic Josephson junctions

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作者
D. Massarotti
A. Pal
G. Rotoli
L. Longobardi
M. G. Blamire
F. Tafuri
机构
[1] Università degli Studi di Napoli ‘Federico II’,Dipartimento di Fisica
[2] Monte S.Angelo,Department of Materials Science and Metallurgy
[3] CNR-SPIN UOS Napoli,Dipartimento di Ingegneria Industriale e dell’Informazione
[4] Monte S.Angelo-via Cinthia,undefined
[5] University of Cambridge,undefined
[6] Seconda Università degli Studi di Napoli,undefined
[7] American Physical Society,undefined
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The interfacial coupling of two materials with different ordered phases, such as a superconductor (S) and a ferromagnet (F), is driving new fundamental physics and innovative applications. For example, the creation of spin-filter Josephson junctions and the demonstration of triplet supercurrents have suggested the potential of a dissipationless version of spintronics based on unconventional superconductivity. Here we demonstrate evidence for active quantum applications of S-F-S junctions, through the observation of macroscopic quantum tunnelling in Josephson junctions with GdN ferromagnetic insulator barriers. We show a clear transition from thermal to quantum regime at a crossover temperature of about 100 mK at zero magnetic field in junctions, which present clear signatures of unconventional superconductivity. Following previous demonstration of passive S-F-S phase shifters in a phase qubit, our result paves the way to the active use of spin filter Josephson systems in quantum hybrid circuits.
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