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Title | Crystal Structure, Phase State, and Magnetoresistive Properties of Nanostructured Thin-Film Systems Based on Permalloy and Noble Metals |
Other Titles |
Кристалічна структура, фазовий стан і магнеторезистивні властивості наноструктурованих тонкоплівкових систем на основі пермалою та шляхетних металів |
Authors |
Pazukha, Iryna Mykhailivna
![]() Shkurdoda, Yurii Oleksiiovych |
ORCID |
http://orcid.org/0000-0001-9410-3024 |
Keywords |
permalloy пермалой noble metal шляхетний метал crystal structure кристалічна структура phase state фазовий стан magnetoresistance магнетоопір concentration effect концентраційний ефект temperature effect температурний ефект |
Type | Article |
Date of Issue | 2022 |
URI | https://essuir.sumdu.edu.ua/handle/123456789/98758 |
Publisher | G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine |
License | Creative Commons Attribution 4.0 International License |
Citation | I. M. Pazukha, and Yu. O. Shkurdoda, Crystal Structure, Phase State, and Magnetoresistive Properties of Nanostructured Thin-Film Systems Based on Permalloy and Noble Metals, Prog. Phys. Met., 23, No. 4: 613–628 (2022). |
Abstract |
We review and analyse the literature data on the experimental results dealing with
the crystal structure, phase state, and magnetoresistive properties of nanostructured
thin-film systems based on NixFe1–x permalloy and noble metals prepared by
the methods of co-evaporation and layer-by-layer condensation. As shown, regardless
of preparation methods, the phase state of systems stays as two-phase one.
Upon high-temperature annealing, the formation of solid solutions is possible. As
shown, in the case of applying of layer-by-layer condensation method, the value of
the magnetoresistive effect depends on the thickness of the magnetic and nonmagnetic
layers. In the case of applying the co-evaporation method, the determining
parameters are the concentrations of the components and the total thickness of the
system. The annealing-temperature effect on magnetoresistive properties of nanostructured
thin-film systems based on permalloy and noble metals is analysed. |
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