Depth profile of transverse permeability spectrum in an annealed Co-based amorphous ribbon

2003 
Amorphous Co/sub 66/Fe/sub 4/B/sub 15/Si/sub 15/ ribbons were annealed at a temperature of 380/spl deg/C for 8 h in open air under a field of 3 Oe applied along the sample axis. The annealed samples were etched in hydrofluoric acid solution during various times from 10 s to 30 min in order to the different thickness of material, t/sub etch/, from ribbon surface. The static permeabilities due to domain wall motion /spl mu//sub s,dw/ and magnetization rotation /spl mu//sub s,rot/ are separated from the permeability extracted from the magnetoimpedance spectra. For the samples with thickness t/sub etch/ less than 2 /spl mu/m, both /spl mu//sub s,dw/ and /spl mu//sub s,rot/ are nearly zero at H=-3 Oe, while they are relatively large at H=+3 Oe. As the etched thickness increases over 2 /spl mu/m, /spl mu//sub s,dw/ and /spl mu//sub s,rot/ at H=-3 Oe start to increases and eventually reach similar values to those at H=+3 Oe. The variations of /spl mu//sub s,rot/ and /spl mu//sub s,rot/ with t/sub etch/ reflect that the sample annealed in open air is nearly saturated in the direction opposite to that of annealing field. This is due to antiferromagnetic coupling between the inner amorphous phase and the surface crystalline phase with thickness about 2 /spl mu/m.
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