Author:
Silva Ana S.,Sá Simão P.,Bunyaev Sergey A.,Garcia Carlos,Sola Iñigo J.,Kakazei Gleb N.,Crespo Helder,Navas David
Abstract
AbstractCoFeB-based ultrathin films with perpendicular magnetic anisotropy are promising for different emerging technological applications such as nonvolatile memories with low power consumption and high-speed performance. In this work, the dynamical properties of [CoFeB (tCoFeB)/Pd (10 Å)]5 multilayered ultrathin films (1 Å ≤ tCoFeB ≤ 5 Å) are studied by using two complementary methods: time-resolved magneto-optical Kerr effect and broadband ferromagnetic resonance. The perpendicular magnetization is confirmed for multilayers with tCoFeB ≤ 4 Å. The effective perpendicular magnetic anisotropy reaches a clear maximum at tCoFeB = 3 Å. Further increase of CoFeB layer thickness reduces the perpendicular magnetic anisotropy and the magnetization became in-plane oriented for tCoFeB ≥ 5 Å. This behaviour is explained by considering competing contributions from surface and magnetoelastic anisotropies. It was also found that the effective damping parameter αeff decreases with CoFeB layer thickness and for tCoFeB = 4 Å reaches a value of ~ 0.019 that is suitable for microwave applications.
Funder
Fundação para a Ciência e a Tecnologia
European Union's Horizon 2020 research and innovation programme
Agencia Nacional de Investigación y Desarrollo de Chile
Spanish Ministry for Science, Innovation and Universities
Publisher
Springer Science and Business Media LLC
Cited by
12 articles.
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