We investigate the effect of Al doping on the magnetic properties of the CoFeB alloy. Comparative measurements of the saturation magnetization, the Gilbert damping parameter α, and the exchange constant as a function of the annealing temperature for CoFeB and CoFeAlB thin films are presented. Our results reveal a strong reduction of the magnetization for CoFeAlB in comparison to CoFeB. If the prepared CoFeAlB films are amorphous, the damping parameter α is unaffected by the Al doping in comparison to the CoFeB alloy. In contrast, in the case of a crystalline CoFeAlB film, α is found to be reduced. Furthermore, the x-ray characterization and the evolution of the exchange constant with the annealing temperature indicate a similar crystallization process in both alloys. The data prove that CoFeAlB fulfills the requirements to be considered an attractive candidate for spin torque switching purposes and a reduction of the switching current in comparison with CoFeB is expected.
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21 August 2017
Research Article|
August 16 2017
CoFeAlB alloy with low damping and low magnetization as a candidate for spin transfer torque switching
A. Conca;
A. Conca
a)
1
Fachbereich Physik and Landesforschungszentrum OPTIMAS, Technische Universität Kaiserslautern
, 67663 Kaiserslautern, Germany
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T. Nakano
;
T. Nakano
2
Department of Applied Physics, Tohoku University
, Sendai 980-8579, Japan
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T. Meyer;
T. Meyer
1
Fachbereich Physik and Landesforschungszentrum OPTIMAS, Technische Universität Kaiserslautern
, 67663 Kaiserslautern, Germany
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Y. Ando;
Y. Ando
2
Department of Applied Physics, Tohoku University
, Sendai 980-8579, Japan
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B. Hillebrands
B. Hillebrands
1
Fachbereich Physik and Landesforschungszentrum OPTIMAS, Technische Universität Kaiserslautern
, 67663 Kaiserslautern, Germany
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J. Appl. Phys. 122, 073902 (2017)
Article history
Received:
April 12 2017
Accepted:
August 03 2017
Citation
A. Conca, T. Nakano, T. Meyer, Y. Ando, B. Hillebrands; CoFeAlB alloy with low damping and low magnetization as a candidate for spin transfer torque switching. J. Appl. Phys. 21 August 2017; 122 (7): 073902. https://doi.org/10.1063/1.4998813
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