Phase-induced switching of ferromagnetic insulators in Josephson spin valves

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Mazanik, A. A., Huang, C. -H., Cazalilla, Miguel A., Bergeret, F. S.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912633477660672
author Mazanik, A. A.
Huang, C. -H.
Cazalilla, Miguel A.
Bergeret, F. S.
author_facet Mazanik, A. A.
Huang, C. -H.
Cazalilla, Miguel A.
Bergeret, F. S.
contents We study the Josephson effect in junctions composed of two ferromagnetic insulator/diffusive superconductor bilayers separated by an insulating barrier. By computing the free energy of the system, we identify two distinct contributions: (i) The work performed by a current source to create a supercurrent through the junction, and (ii) an antiferromagnetic coupling between ferromagnetic insulators, mediated by the superconducting condensate across the insulating barrier. The competition between these contributions allows for switching between parallel and antiparallel configurations of the magnetizations of the ferromagnetic insulators. We explicitly show that the switching occurs at finite temperatures and for superconducting phase differences satisfying $π/2 < ϕ< 3π/2$. Importantly, this effect can be realized in ferromagnetic insulators with sufficiently large easy-plane anisotropy energy. Using realistic junction parameters, we demonstrate that the switching can be controlled by phase bias and triggered by half-flux-quantum voltage pulses or external magnetic field pulses on the microsecond timescale. These results provide a route towards controllable Josephson-based superconducting memory devices based on EuS/Al heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2510_06109
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Phase-induced switching of ferromagnetic insulators in Josephson spin valves
Mazanik, A. A.
Huang, C. -H.
Cazalilla, Miguel A.
Bergeret, F. S.
Superconductivity
We study the Josephson effect in junctions composed of two ferromagnetic insulator/diffusive superconductor bilayers separated by an insulating barrier. By computing the free energy of the system, we identify two distinct contributions: (i) The work performed by a current source to create a supercurrent through the junction, and (ii) an antiferromagnetic coupling between ferromagnetic insulators, mediated by the superconducting condensate across the insulating barrier. The competition between these contributions allows for switching between parallel and antiparallel configurations of the magnetizations of the ferromagnetic insulators. We explicitly show that the switching occurs at finite temperatures and for superconducting phase differences satisfying $π/2 < ϕ< 3π/2$. Importantly, this effect can be realized in ferromagnetic insulators with sufficiently large easy-plane anisotropy energy. Using realistic junction parameters, we demonstrate that the switching can be controlled by phase bias and triggered by half-flux-quantum voltage pulses or external magnetic field pulses on the microsecond timescale. These results provide a route towards controllable Josephson-based superconducting memory devices based on EuS/Al heterostructures.
title Phase-induced switching of ferromagnetic insulators in Josephson spin valves
topic Superconductivity
url https://arxiv.org/abs/2510.06109