Title :
Generalized Measurement Method for the Determination of the Dynamic Behavior of Magnetic Materials in Any Magnetization State
Author :
Lezaca, Jorge Enrique ; Quéffélec, Patrick ; Chevalier, Alexis
Author_Institution :
Lab.-STICC, Univ. Eur. de Bretagne, Brest, France
fDate :
6/1/2010 12:00:00 AM
Abstract :
broad-band characterization method based on the junction of the full-wave analysis of a nonreciprocal strip transmission line with a predictive permeability tensor model is presented. The aim of this method is the direct measurement of the permeability tensor components spectra of magnetized thick samples, whatever their magnetization state is. The propagation constants of the dominant transverse electromagnetic (TEM) and higher order modes inside the measurement cell are obtained along with its scattering parameters (S-parameters). The apparition of magnetostatic modes and the nonreciprocal nature of the structure are probed. Procedures based on the use of this method to find accurate values of gyromagnetic resonance and the resonance line width (¿H) are proposed. The direct analysis is validated by comparison of the calculated S-parameters with those obtained with an electromagnetic field simulator based on finite element methods (FEM).
Keywords :
S-parameters; electromagnetic fields; finite element analysis; gyromagnetic effect; magnetic materials; magnetic permeability; magnetisation; transmission lines; S-parameters; dominant transverse electromagnetic; dynamic behavior; electromagnetic field simulator; finite element methods; full-wave analysis; gyromagnetic resonance; magnetic materials; magnetization state; magnetostatic modes; nonreciprocal strip transmission line; predictive permeability tensor; propagation constants; resonance line width; scattering parameters; Electromagnetic measurements; Magnetic analysis; Magnetic materials; Magnetization; Magnetostatics; Permeability measurement; Resonance; Scattering parameters; Tensile stress; Transmission line measurements; Magnetic resonance; magnetic variables measurement; nonreciprocal wave propagation; permeability; scattering parameters;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2009.2039776