Current‐Driven Switching of Néel Vector of an Antiferromagnetic Insulator Thin Film

Author:

Ajejas Fernando1ORCID,Torres Felipe23,Basaran Ali C.1,Salev Pavel1,Schuller Ivan K.1

Affiliation:

1. Department of Physics and Center for Advanced Nanoscience University of California, San Diego La Jolla CA 92093 USA

2. Departamento de Física Facultad de Ciencias Universidad de Chile Casilla 653 Santiago 7800024 Chile

3. Centro de Nanociencia y Nanotecnología (CEDENNA) Avda. Ecuador 3493 Santiago 9170124 Chile

Abstract

AbstractManipulation of antiferromagnetic (AFM) materials as active elements provides a crucial combination of electrical, thermal, and magnetic properties for spintronics. This study shows how the spin current generated in heavy metal is induced by spin‐orbit torque into an adjacent AFM insulator. The bulk unpinned spins of the AFM layer drive a spin current that is transmitted to the top ferromagnet. This mechanism allows the electrical control of the exchange bias, coercive field, and blocking temperature of the system. Further support is provided by a model calculation that quantitatively describes the effect of the spin current injection into the AFM.

Publisher

Wiley

Subject

Electronic, Optical and Magnetic Materials

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