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We have carried out an experimental study based upon the ferromagnetic resonance (FMR) on the anisotropy of alloy ribbons of (Fe1-xCox)(84)Zr3.5Nb3.5B8Cu1 ( x = 0.0, 0.2, 0.4, 0.6, 0.8). The easy axes of the samples are in the lateral direction of the ribbons, While the single-axis anisotropy constant K' of the samples having the same width decreases as the amount of Co increases. The value of K' lies between 4.67 x 10(-5) J/m(4) ( X = 0.0) and 2.54 x 10(-5) J/m(4)(x = 0. 8). Since the imaginary part chi" of the alternating current magnetic susceptibility changes nonlinearly with the magnetic field H, there is a low field (0-12 mT) non-resonance signal having a comparable strength with that of the ferromagnetic resonance signal. It is found through the study on the magnetic process of the alloy ribbon of Fe84Zr3.5Nb3.5B8 Cut that dchi"/dH = 0 in the regions of the reversible (0-12 mT) and saturated (9.0 mT-12 mT) magnetization that chi" ( H) is related to the n-th power of H, i. e., H-n ( n greater than or equal to 3) when the domain wall motion is nonreversible; and chi" is related to H 2 during the domain rotation (Rayleigh region, dchi"/dH is a constant). Specifically, it is found that the chi" ( H) proportional to H 2 and that proportional to Hn ( n greater than or equal to 3) appear alternatively in three sections, corresponding to the disappearance of different domains.
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