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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.
Appears in Collections: Наукові видання (ЕлІТ)

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