We prepared weak-field annealed amorphous samples in the open air and present the change of giant magnetoimpedance (GMI) profiles as functions of annealing field, H-a. The profile for 0.1 MHz measuring frequency shows two typical peaks in the sample annealed in a field of H-a < 50 mOe. Increasing H-a to 500 mOe, the CMI peak in the region where the applied field is antiparallel to the annealing field decreases with H-a, showing an asymmetric GMI profile. As the annealing field increases over 500 mOe, GMI in the antiparallel field region disappears and a GMI-valve in the parallel field region is revealed due to the exchange coupling of domains in the amorphous core with the unidirectional anisotropy field in a crystalline layer. However, in the sample with H-a of 15 Oe, the GMI peak ill the antiparallel region is observable again. (C) 2000 Elsevier Science B.V. All rights reserved.
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Instituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, ItalyInstituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, Italy
Tiberto, P.
Vinai, F.
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Instituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, ItalyInstituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, Italy
Vinai, F.
Rampado, O.
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Instituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, ItalyInstituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, Italy
Rampado, O.
Chiriac, H.
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Institute of Technical Physics, 47 Mangeron Blvd., 6600 Iasi 3, RomaniaInstituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, Italy
Chiriac, H.
Ovari, T.A.
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Institute of Technical Physics, 47 Mangeron Blvd., 6600 Iasi 3, RomaniaInstituto Electtrotecnico Nazionale Galileo Ferraris and INFM, Cor so Massimo d'Azeglio 42, I-10125 Torino, Italy
Ovari, T.A.
Journal of Magnetism and Magnetic Materials,
1999,
196
: 388
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390