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May 17, 2026Bulletin of the Russian Academy of Sciences Physics0 citations

Micromagnetic Simulation of Group and Single One-Dimensional Ferromagnetic Nanostructures

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EGE. A. GrushevskiNSN. G. SavinskiOTO. S. Trushin

Key Points

  • The study aims to explore the magnetic properties of one-dimensional ferromagnetic nanostructures through micromagnetic simulations.
  • Conducted micromagnetic simulations on both group and individual one-dimensional ferromagnetic nanostructures.
  • Analyzed the effects of high aspect ratios on magnetic shape and domain formation.
  • Investigated how circular symmetry impacts the alignment of magnetic moments.
  • Demonstrated the formation of longitudinal domains in high aspect ratio ferromagnetic cylinders.
  • Showed that circular symmetry reduces the number of regions for magnetic moments that are not parallel.
  • Highlighted pronounced effects of these features in nanoscale wires.

Abstract

Micromagnetic simulation of group and individual one-dimensional ferromagnetic nanostructures was performed. The high aspect ratio of the ferromagnetic cylinders creates an anisotropic magnetic shape, facilitating the formation of longitudinal domains. On the other hand, circular symmetry enables one to utilize fewer common regions where the magnetic moments are not parallel to each other but move along a circle. All these features become even more pronounced in nanoscale wires.

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Cite This Study

Grushevski et al. (2026) studied this question.

synapsesocial.com/papers/6a095ac47880e6d24efe0a95https://doi.org/10.1134/s106287382670019x
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