paper

Large spin-orbit torque in a-plane -FeO/Pt bilayers

arXiv:2407.07731 · doi:10.1103/PhysRevLett.134.066701

Abstract

Realization of efficient spin-orbit torque switching of the Néel vector in insulating antiferromagnets is a challenge, often complicated by spurious effects. Quantifying the spin-orbit torques in antiferromagnet/heavy metal heterostructures is an important first step towards this goal. Here, we employ magneto-optic techniques to study damping-like spin-orbit torque (DL-SOT) in a-plane -FeO (hematite) with a Pt spin-orbit overlayer. We find that the DL-SOT efficiency is two orders of magnitude larger than reported in c- and r-plane hematite/Pt using harmonic Hall techniques. The large magnitude of DL-SOT is supported by direct imaging of current-induced motion of antiferromagnetic domains that happens at moderate current densities. Our study introduces a new method for quantifying spin-orbit torque in antiferromagnets with a small canted moment and identifies a-plane -FeO as a promising candidate to realize efficient SOT switching.

6 pages, 3 figures

Large spin-orbit torque in a-plane $α$-Fe$_{2}$O$_{3}$/Pt bilayers · wovepaper