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Deterministic switching of a perpendicularly polarized magnet using unconventional spin-orbit torques in WTe

Authors :
I-Hsuan, Kao
Ryan, Muzzio
Hantao, Zhang
Menglin, Zhu
Jacob, Gobbo
Sean, Yuan
Daniel, Weber
Rahul, Rao
Jiahan, Li
James H, Edgar
Joshua E, Goldberger
Jiaqiang, Yan
David G, Mandrus
Jinwoo, Hwang
Ran, Cheng
Jyoti, Katoch
Simranjeet, Singh
Source :
Nature materials. 21(9)
Publication Year :
2020

Abstract

Spin-orbit torque (SOT)-driven deterministic control of the magnetic state of a ferromagnet with perpendicular magnetic anisotropy is key to next-generation spintronic applications including non-volatile, ultrafast and energy-efficient data-storage devices. However, field-free deterministic switching of perpendicular magnetization remains a challenge because it requires an out-of-plane antidamping torque, which is not allowed in conventional spin-source materials such as heavy metals and topological insulators due to the system's symmetry. The exploitation of low-crystal symmetries in emergent quantum materials offers a unique approach to achieve SOTs with unconventional forms. Here we report an experimental realization of field-free deterministic magnetic switching of a perpendicularly polarized van der Waals magnet employing an out-of-plane antidamping SOT generated in layered WTe

Details

ISSN :
14764660
Volume :
21
Issue :
9
Database :
OpenAIRE
Journal :
Nature materials
Accession number :
edsair.pmid..........3510dbb7fce70ba6cba351797adff61c