Soft magnetic properties and damping parameter of (FeCo)-Al alloy thin films
Author(s) -
Isao Kanada,
Alex A. Cruce,
Tim Mewes,
Shuang Wu,
Claudia Mewes,
G. J. Mankey,
T. Suzuki
Publication year - 2017
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4975995
Subject(s) - materials science , thin film , alloy , magnetization , magnetization dynamics , saturation (graph theory) , condensed matter physics , magnetic damping , nuclear magnetic resonance , composite material , magnetic field , nanotechnology , physics , mathematics , vibration , quantum mechanics , combinatorics
For high frequency device applications, a systematic study of the soft magnetic properties and magnetization dynamics of (FeCo)-Al alloy thin films has been carried out. A low effective damping parameter αeff of 0.002 and a high saturation magnetization of about 1,800 emu/cc are obtained at y=0.2∼0.3 for (Fe1-yCoy)98Al2 alloy thin films deposited onto fused silica and MgO(100) at an ambient temperature during deposition. Those films are of the bcc structure with the <110> orientation normal to the film plane. They possess a columnar structure, grown along the film normal. The column width is found to be about 20 nm for y=0.25. It is concluded that the (FeCo)-Al thin films with a damping parameter as low as 0.002 and high saturation magnetization of about 1,800 emu/cc have been successfully fabricated, and that they are potential for future high frequency device applications
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