DocumentCode :
3602748
Title :
Tunable High-Frequency Properties of Co–Ni Ferromagnetic Nanowires Through Composition Modulation
Author :
Yuxiong Lei ; Liangliang Li ; Lixin Yuan ; Zhenxing Yue
Author_Institution :
Sch. of Mater. Sci. & Eng., Tsinghua Univ., Beijing, China
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
6
Abstract :
High-frequency properties of Co-Ni ferromagnetic nanowires with different compositions were investigated in this paper. Co-Ni nanowires including Ni, Co38Ni62, Co50Ni50, Co72Ni28, and Co were synthesized in anodic aluminum oxide templates by electrodeposition. The ferromagnetic resonance (FMR) frequency of nanowires was measured by a vector network analyzer with a coplanar waveguide line. Without an external magnetic field, the FMR frequency of the Co-Ni nanowires monotonically increased from 11.0 to 21.5 GHz when the Co content increased from 0 to 100 at.%. With an applied magnetic field of 9.0 kOe, the FMR frequency also linearly rose from 30.0 to 37.5 GHz with increasing the Co content. The experimental data showed that the high-frequency properties of Co-Ni nanowires were linearly tuned through composition modulation, which provided a feasible approach to adjust the working frequency of radio frequency or microwave micro-devices without the assistance of an external magnetic field.
Keywords :
cobalt alloys; electrodeposition; ferromagnetic materials; ferromagnetic resonance; high-frequency effects; nanofabrication; nanomagnetics; nanowires; nickel alloys; CoNi; FMR frequency; anodic aluminum oxide templates; coplanar waveguide line; electrodeposition; ferromagnetic nanowires; ferromagnetic resonance frequency; microwave microdevices; tunable high-frequency properties; vector network analyzer; Frequency modulation; Magnetic fields; Magnetic resonance; Microwave filters; Nanowires; Nickel; Composition modulation; Ferromagnetic resonance; High-frequency materials; Microwave properties; Nanowires; ferromagnetic resonance (FMR); high-frequency materials; microwave properties; nanowires;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2440371
Filename :
7116572
Link To Document :
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