4.3 Article Proceedings Paper

Time and spatial evolution of spin-orbit torque-induced magnetization switching in W/CoFeB/MgO structures with various sizes

Journal

JAPANESE JOURNAL OF APPLIED PHYSICS
Volume 57, Issue 4, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.7567/JJAP.57.04FN02

Keywords

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Funding

  1. R&D project for ICT Key Technology of MEXT
  2. ImPACT Program of CSTI
  3. RIEC Cooperative Research Projects
  4. JST-OPERA
  5. JSPS KAKENHI Grant [17H06093]
  6. Grants-in-Aid for Scientific Research [17H06093] Funding Source: KAKEN

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We study spin-orbit torque (SOT) switching in W/CoFeB/MgO structures with various dot sizes (120-3500 nm) using pulsed current of various widths tau (800 ps-100 ms) to examine the time and spatial evolution of magnetization switching. We show that the switching behavior and the resultant threshold switching current density Jth strongly depend on device size and pulse width. The switching mode in a 3500 nm dot device changes from probabilistic switching to reproducible partial switching as t decreases. At tau = 800 ps, Jth becomes more than 3 times larger than that in the long-pulse regime. A decrease in dot size to 700 nm does not significantly change the switching characteristics, suggesting that domain-wall propagation among the nucleated multiple domains governs switching. In contrast, devices with further reduced size (120 nm) show normal full switching with increasing probability with current and insignificant dependence of Jth on tau, indicating that nucleation governs switching. (C) 2018 The Japan Society of Applied Physics.

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