Realisation of de Gennes’ absolute superconducting switch with a heavy metal interface
Abstract
Abstract In 1966, Pierre-Gilles de Gennes proposed a non-volatile mechanism for switching superconductivity on and off in a magnetic device. This involved a superconductor (S) sandwiched between ferromagnetic (F) insulators in which the net magnetic exchange field could be controlled through the magnetisation-orientation of the F layers. Because superconducting switches are attractive for a range of applications, extensive studies have been carried out on F/S/F structures. Although these have demonstrated a sensitivity of the superconducting critical temperature (T c) to parallel (P) and antiparallel (AP) magnetisation-orientations of the F layers, corresponding shifts in T c (i.e. ΔT c = T c,AP − T c,P) are lower than predicted with ΔT c only a small fraction of T c,AP, precluding the development of applications. Here, we report EuS/Au/Nb/EuS structures where EuS is an insulating ferromagnet, Nb is a superconductor and Au is a heavy metal. For P magnetisations, the superconducting state in this structure is quenched down to the lowest measured temperature of 20 mK meaning that ΔT c/T c,AP is practically 1. The key to this so-called 'absolute switching' effect is a sizable spin-mixing conductance at the EuS/Au interface which ensures a robust magnetic proximity effect, unlocking the potential of F/S/F switches for low power electronics.
Article Details
Authors (16)
Hisakazu Matsuki
Alberto Hijano
Grzegorz P. Mazur
Stefan Ilic
Binbin Wang
Department of Chemistry, Key Laboratory of Surface & Interface Science of Polymer Materials of Zhejiang Province
Iuliia Alekhina
Kohei Ohnishi
Sachio Komori
Yang Li
Nadia Stelmashenko
Niladri Banerjee
Lesley F. Cohen
David W. McComb
F. Sebastián Bergeret
Guang Yang
Jason W. A. Robinson