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Reduction in critical current density by tuning damping constants of CoFeB for spin-torque-transfer switching
Journal article   Peer reviewed

Reduction in critical current density by tuning damping constants of CoFeB for spin-torque-transfer switching

Chih-Liang Wang, Sheng-Huang Huang, Chih-Huang Lai, Wei-Chuan Chen, Shan-Yi Yang, Kuei-Hung Shen and Hui-Yun Bor
Journal of Physics D: Applied Physics, Vol.42(11), 115006
2009

Abstract

Different capping layers were deposited on 2.5 nm Co 72 Fe 8 B 20 to investigate their effects on damping constants and critical current density (J C0 ) for spin-torque-transfer switching. The damping constant of CoFeB is affected by the interfacial conditions and the spin-pumping effects. The Cu capping layer significantly suppresses intermixing and possesses the lowest damping constant of 0.009. The micromagnetic simulations reveal that the low damping constant of CoFeB may result in the nucleation of domains at lower current density, and thus reduces J C0 . A reduction of 27% in J C0 can be achieved by replacing the conventional Ta capping layer with a Cu layer. © 2009 IOP Publishing Ltd.

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