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Optimization of Magnetoimpedance Effect and Magnetic Properties of Fe-Rich Glass-Coated Microwires by Annealing

Authors :
Polímeros y Materiales Avanzados: Física, Química y Tecnología
Física aplicada
Polimero eta Material Aurreratuak: Fisika, Kimika eta Teknologia
Fisika aplikatua
González, Alvaro
García Gómez, Alfonso
Zhukova Zhukova, Valentina
Corte León, Paula
Ipatov, Mihail
Blanco Aranguren, Juan María
González Estévez, Julián María
Zukov Egorova, Arkady Pavlovich
Polímeros y Materiales Avanzados: Física, Química y Tecnología
Física aplicada
Polimero eta Material Aurreratuak: Fisika, Kimika eta Teknologia
Fisika aplikatua
González, Alvaro
García Gómez, Alfonso
Zhukova Zhukova, Valentina
Corte León, Paula
Ipatov, Mihail
Blanco Aranguren, Juan María
González Estévez, Julián María
Zukov Egorova, Arkady Pavlovich
Publication Year :
2023

Abstract

As-prepared Fe-rich microwires with perfectly rectangular hysteresis loops present magnetization reversal through fast domain wall propagation, while the giant magnetoimpedance (GMI) effect in Fe-rich microwires is rather low. However, the lower cost of Fe-rich microwires makes them attractive for magnetic sensors applications. We studied the effect of conventional (furnace) annealing and Joule heating on magnetic-propertied domain wall (DW) dynamics and the GMI effect in two Fe microwires with different geometries. We observed that magnetic softness, GMI effect and domain wall (DW) dynamics can be substantially improved by appropriate annealing. Observed experimental results are discussed considering the counterbalance between the internal stresses relaxation and induced magnetic anisotropy associated with the presence of an Oersted magnetic field during Joule heating.

Details

Database :
OAIster
Notes :
This work was funded by the Spanish MICIN under PID2022-141373NB-I00, by the EU “Horizon Europe “under the “INFINITE” (HORIZON-CL5-2021-D5-01-06) project and by the government of the Basque Country under PUE_2021_1_0009, “Ayuda a Grupos Consolidados” (ref. IT1670-22) and Elkartek (MINERVA, MAGAF and ZE-KONP) projects., English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1405406390
Document Type :
Electronic Resource