Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix

A literary review of the experimental results concerning phase state and crystal structure, magnetoresistive and magnetic properties of the thin-film composite materials formed on the base of granules of ferromagnetic Co metal or FexCo1–x alloy embedded into the insulator matrix (SiO, SiO2, Al2O3) v...

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Main Author: I. M. Pazukha, V. V. Shchotkin, Yu. O. Shkurdoda
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2019-12-01
Series:Успехи физики металлов
Subjects:
Online Access:https://doi.org/10.15407/ufm.20.04.672
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author I. M. Pazukha, V. V. Shchotkin, Yu. O. Shkurdoda
author_facet I. M. Pazukha, V. V. Shchotkin, Yu. O. Shkurdoda
author_sort I. M. Pazukha, V. V. Shchotkin, Yu. O. Shkurdoda
collection DOAJ
description A literary review of the experimental results concerning phase state and crystal structure, magnetoresistive and magnetic properties of the thin-film composite materials formed on the base of granules of ferromagnetic Co metal or FexCo1–x alloy embedded into the insulator matrix (SiO, SiO2, Al2O3) via different discovery methods is presented. As shown, the value of magnetoresistance, character of its field dependences and magnetic characteristics depend on the concentration and size distribution of ferromagnetic granules. At the specified conditions, the perpendicular anisotropy can be realized in the structures as ferromagnetic granule–insulator matrix; the reasons of such anisotropy are analysed.
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spelling doaj.art-73670db48a8b4a68959ec57e3e2e67902022-12-22T03:29:43ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов1608-10212617-07952019-12-0120467269210.15407/ufm.20.04.672Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric MatrixI. M. Pazukha, V. V. Shchotkin, Yu. O. ShkurdodaA literary review of the experimental results concerning phase state and crystal structure, magnetoresistive and magnetic properties of the thin-film composite materials formed on the base of granules of ferromagnetic Co metal or FexCo1–x alloy embedded into the insulator matrix (SiO, SiO2, Al2O3) via different discovery methods is presented. As shown, the value of magnetoresistance, character of its field dependences and magnetic characteristics depend on the concentration and size distribution of ferromagnetic granules. At the specified conditions, the perpendicular anisotropy can be realized in the structures as ferromagnetic granule–insulator matrix; the reasons of such anisotropy are analysed.https://doi.org/10.15407/ufm.20.04.672compositeferromagnetic materialinsulator matrixmagnetoresistancemagnetic properties
spellingShingle I. M. Pazukha, V. V. Shchotkin, Yu. O. Shkurdoda
Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
Успехи физики металлов
composite
ferromagnetic material
insulator matrix
magnetoresistance
magnetic properties
title Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
title_full Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
title_fullStr Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
title_full_unstemmed Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
title_short Structure, Magnetic and Magnetoresistive Properties of Composite Materials Based on Ferromagnetic Metals and Alloys with Different Types of Dielectric Matrix
title_sort structure magnetic and magnetoresistive properties of composite materials based on ferromagnetic metals and alloys with different types of dielectric matrix
topic composite
ferromagnetic material
insulator matrix
magnetoresistance
magnetic properties
url https://doi.org/10.15407/ufm.20.04.672
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