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Field-free spin-orbit torque-induced magnetization switching in a miscut-substrate driven slant-perpendicular magnetic anisotropy system

Title
Field-free spin-orbit torque-induced magnetization switching in a miscut-substrate driven slant-perpendicular magnetic anisotropy system
Author(s)
An, SuhyeokKim, Jin-ALee, SoobeomLee, Ki-SeungYou, Chun-Yeol
Issued Date
2023-08
Citation
Applied Physics Letters, v.123, no.6
Type
Article
Keywords
SpintronicsMagnetic anisotropyMagnetic orderingSemiconductor device fabrication
ISSN
0003-6951
Abstract
In a perpendicular magnetic anisotropy (PMA) system, spin-orbit torque (SOT)-induced magnetization switching shows promise in terms of high speed and stability, but additional in-plane directional symmetry breaking is necessary to achieve deterministic switching. Here, we observed all-electric magnetization switching by SOT in a conventional heavy metal/ferromagnetic structure deposited on a 3.25° miscut sapphire substrate. To better understand the origin of field-free switching, we conducted azimuthal angle-dependent PMA analysis and found that the magnetic anisotropy is slightly tilted in the direction of the miscut step. Despite a few degrees of tilting angle (<3°), we also confirmed that a slant PMA is the origin of the field-free switching by micromagnetic simulations. © 2023 Author(s).
URI
http://hdl.handle.net/20.500.11750/47736
DOI
10.1063/5.0158394
Publisher
American Institute of Physics Publising
Related Researcher
  • 유천열 You, Chun-Yeol
  • Research Interests Spintronics; Condensed Matter Physics; Magnetic Materials & Thin Films; Micromagnetic Simulations; Spin Nano-Devices
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Appears in Collections:
Department of Physics and Chemistry Spin Phenomena for Information Nano-devices(SPIN) Lab 1. Journal Articles

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