arXiv · 2002.06578
Electric-field control of spin-orbit torques in perpendicularly magnetized W/CoFeB/MgO films
Abstract
Controlling magnetism by electric fields offers a highly attractive perspective for designing future generations of energy-efficient information technologies. Here, we demonstrate that the magnitude of current-induced spin-orbit torques in thin perpendicularly magnetized CoFeB films can be tuned and even increased by electric field generated piezoelectric strain. Using theoretical calculations, we uncover that the subtle interplay of spin-orbit coupling, crystal symmetry, and orbital polarization is at the core of the observed strain dependence of spin-orbit torques. Our results open a path to integrating two energy efficient spin manipulation approaches, the electric field-induced strain and the current-induced magnetization switching, thereby enabling novel device concepts.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mariia Filianina, Jan-Philipp Hanke, Kyujoon Lee, Dong-Soo Han, Samridh Jaiswal, Gerhard Jakob, Yuriy Mokrousov, Mathias Kläui. 2020-02-16. Electric-field control of spin-orbit torques in perpendicularly magnetized W/CoFeB/MgO films. https://doi.org/10.1103/physrevlett.124.217701
Cite the original work for its findings. Save a collection to share your selection of sources.