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Fizika Tverdogo Tela, 2021, Volume 63, Issue 4, Page 514 (Mi ftt10150)  

This article is cited in 7 scientific papers (total in 7 papers)

Magnetism

Investigation of the domain structure of Co-based microwires by magneto-optical indicator films method

O. I. Aksenov, A. S. Aronin

Institute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Russia
Full-text PDF (23 kB) Citations (7)
Abstract: The investigation of domain structure of Co-based microwires with negative magnetostriction was provided by magneto-optical method of indicator films. The thickness of the domain layer and the width of the surface domains were determined. It has been suggested that in thin microwires (with the diameter of about several tens of microns) with negative magnetostriction, the Néel-type of domain walls between the domains of the surface layer are observed. A number of assumptions about the regularities of the surface domain structure formation of microwires with negative magnetostriction have been put forward.
Keywords: microwire, domain structure, negative magnetostriction, magneto-optical indicator films, amorphous.
Funding agency Grant number
Ministry of Education and Science of the Russian Federation
Russian Foundation for Basic Research 19-03-00355
The research is carried out within the state task of ISSP RAS with the partial support of the Russian Foundation for Basic Research (grant 19-03-00355).
Received: 02.12.2020
Revised: 02.12.2020
Accepted: 03.12.2020
English version:
Physics of the Solid State, 2021, Volume 63, Issue 4, Pages 513–518
DOI: https://doi.org/10.1134/S1063783421040028
Document Type: Article
Language: English
Citation: O. I. Aksenov, A. S. Aronin, “Investigation of the domain structure of Co-based microwires by magneto-optical indicator films method”, Fizika Tverdogo Tela, 63:4 (2021), 514; Phys. Solid State, 63:4 (2021), 513–518
Citation in format AMSBIB
\Bibitem{AksAro21}
\by O.~I.~Aksenov, A.~S.~Aronin
\paper Investigation of the domain structure of Co-based microwires by magneto-optical indicator films method
\jour Fizika Tverdogo Tela
\yr 2021
\vol 63
\issue 4
\pages 514
\mathnet{http://mi.mathnet.ru/ftt10150}
\transl
\jour Phys. Solid State
\yr 2021
\vol 63
\issue 4
\pages 513--518
\crossref{https://doi.org/10.1134/S1063783421040028}
Linking options:
  • https://www.mathnet.ru/eng/ftt10150
  • https://www.mathnet.ru/eng/ftt/v63/i4/p514
  • This publication is cited in the following 7 articles:
    1. A. González, V. Zhukova, P. Corte-León, J.M. Blanco, A. Zhukov, “Tailoring of soft magnetic properties and giant magnetoimpedance effect in Co-Fe glass-coated microwires by Joule heating”, Journal of Alloys and Compounds, 1020 (2025), 179450  crossref
    2. A. Gonzalez, P. Corte-León, V. Zhukova, J. M. Blanco, J. Olivera, A. Zhukov, “Development of Co-rich glass-coated microwires with high GMI effect”, AIP Advances, 15:3 (2025)  crossref
    3. Paula Corte-Leon, Alvaro Gonzalez, Juan Maria Blanco, Valentina Zhukova, Mihail Ipatov, Julian Gonzalez, Arcady Zhukov, “Controlling of the single domain wall propagation in magnetic microwires by magnetostatic interaction”, Journal of Science: Advanced Materials and Devices, 9:2 (2024), 100712  crossref
    4. P. Corte-León, A. Gonzalez, V. Zhukova, M. Ipatov, J.M. Blanco, A. Zhukov, “Optimization of giant magnetoimpedance effect in Co-rich glass-coated microwires by annealing”, Journal of Alloys and Compounds, 999 (2024), 175023  crossref
    5. K. Chichay, S. Shevyrtalov, V. Rodionova, V. Zhukova, A. Zhukov, “Domain wall dynamics in stress annealed microwires”, Materials Research Bulletin, 178 (2024), 112905  crossref
    6. R. López Antón, J.P. Andrés, J.A. González, A. García-Gómez, V.Zhukova, A. Chizhik, M. Salaheldeen, A.Zhukov, “Tuning of magnetic properties and Giant Magnetoimpedance effect in multilayered microwires”, Journal of Science: Advanced Materials and Devices, 2024, 100821  crossref
    7. Alexander Chizhik, Julian Gonzalez, Arcady Zhukov, Przemyslaw Gawronski, “Review of Helical Magnetic Structures in Magnetic Microwires”, Chemosensors, 10:8 (2022), 291  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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