DocumentCode :
1859331
Title :
Study of the complex permeability of amorphous wires using microwave impedance spectroscopy
Author :
Ciureanu, P. ; Akyel, C. ; Britel, M.R. ; Ménard, D. ; Melo, L.G.C. ; Yelon, A. ; Valenzuela, R. ; Rudkowski, P.
Author_Institution :
Dept. de Genie Phys., Ecole Polytech. de Montreal, Que., Canada
Volume :
3
fYear :
1999
fDate :
1999
Firstpage :
876
Abstract :
We have measured (10 MHz-6 GHz) the magnetoimpedance of ferromagnetic amorphous wires placed as internal conductors in shorted coaxial lines. Three types of materials have been investigated: CoFeSiB wires from Unitika (Japan), cast by rapid quenching in water, and NiCoFeSiBMn and CoFeSiNbB wires from MXT (Canada), cast by melt extraction. In order to investigate magnetic properties, we used a complex permeability formalism directly obtained from impedance by means of a transformation which leads to an exchange in components from real to imaginary and vice-versa. From the analysis of Cole-Cole plots of the relative permeability, ferromagnetic resonance was identified as the magnetization process occurring when an axial dc magnetic field of several hundred oersteds was applied to the line. An equivalent circuit of the magnetic wire was used to demonstrate that the field variation of the inverse of the equivalent resistance was quite similar to those of the line width vs resonance frequency ratio and of the maximum of the imaginary part of the relative permeability
Keywords :
amorphous magnetic materials; boron alloys; cobalt alloys; electric impedance measurement; equivalent circuits; ferromagnetic materials; ferromagnetic resonance; giant magnetoresistance; iron alloys; magnetic permeability; magnetic permeability measurement; manganese alloys; microwave measurement; nickel alloys; niobium alloys; silicon alloys; 10 MHz to 6 GHz; CoFeSiB; CoFeSiB wires; CoFeSiNbB; CoFeSiNbB wires; Cole-Cole plots; GMI; NiCoFeSiBMn; NiCoFeSiBMn wires; axial dc magnetic field; complex permeability; equivalent circuit; equivalent resistance inverse; ferromagnetic amorphous wires; ferromagnetic resonance; giant magnetoimpedance; internal conductors; line width; magnetic properties; magnetization process; melt extraction; microwave impedance spectroscopy; rapid quenching; relative permeability; resonance frequency ratio; shorted coaxial lines; Amorphous magnetic materials; Amorphous materials; Coaxial components; Conducting materials; Impedance; Magnetic analysis; Magnetic materials; Magnetic properties; Permeability; Wires;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 1999 Asia Pacific
Print_ISBN :
0-7803-5761-2
Type :
conf
DOI :
10.1109/APMC.1999.833733
Filename :
833733
Link To Document :
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