Field-Free Spin-Orbit Torque Magnetization Switching in a Single-Phase Ferromagnetic and Spin Hall Oxide.

Jo, Yongjoo; Kim, Younji; Kim, Sanghyeon; Ryoo, Eunjo; Noh, Gahee; Han, Gi-Jeong; Lee, Ji Hye; Cho, Won Joon et al. · Nano Lett · 2024

basic_science · Level V

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Abstract

Current-induced spin-orbit torque (SOT) offers substantial promise for the development of low-power, nonvolatile magnetic memory. Recently, a single-phase material concurrently exhibiting magnetism and the spin Hall effect has emerged as a scientifically and technologically interesting platform for realizing efficient and compact SOT systems. Here, we demonstrate external-magnetic-field-free switching of perpendicular magnetization in a single-phase ferromagnetic and spin Hall oxide SrRuO<sub>3</sub>. We delicately altered the local lattices of the top and bottom surface layers of SrRuO<sub>3</sub>, while retaining a quasi-homogeneous, single-crystalline nature of the SrRuO<sub>3</sub> bulk. This leads to unbalanced spin Hall effects between the top and bottom layers, enabling net SOT performance within single-layer ferromagnetic SrRuO<sub>3</sub>. Notably, our SrRuO<sub>3</sub> exhibits the highest SOT efficiency and lowest power consumption among all known single-layer systems under field-free conditions. Our method of artificially manipulating the local atomic structures will pave the way for advances in spin-orbitronics and the exploration of new SOT materials.