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Boris A. Belyaev

Researcher at Siberian Federal University

Publications -  194
Citations -  1038

Boris A. Belyaev is an academic researcher from Siberian Federal University. The author has contributed to research in topics: Microstrip & Resonator. The author has an hindex of 14, co-authored 185 publications receiving 877 citations. Previous affiliations of Boris A. Belyaev include Siberian State Aerospace University & Russian Academy of Sciences.

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Magnetic imaging in thin magnetic films by local spectrometer of ferromagnetic resonance

TL;DR: In this article, the automatized scanning spectrometer of ferromagnetic resonance has been designed for measuring a distribution of in-plane magnetic anisotropy, effective saturation magnetization, coercivity, and other performances across the area of thin magnetic films (TMFs) in a monodomain state.
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Ferromagnetic resonance study of the effect of elastic stresses on the anisotropy of magnetic films

TL;DR: In this paper, the distribution of the magnitude and direction of the uniaxial magnetic anisotropy field over the area of permalloy films obtained by thermal evaporation in vacuum was studied using a scanning ferromagnetic resonance spectrometer.
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Study of the structural and magnetic characteristics of epitaxial Fe 3 Si/Si(111) films

TL;DR: In this paper, the structural and magnetic properties of the epitaxial structure of a single-crystal Fe3Si silicide film with the orientation Si[111] was identified using X-ray structural analysis, transmission electron microscopy, and reflection high-energy electron diffraction.
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Microstructural and magnetic properties of thin obliquely deposited films: A simulation approach

TL;DR: In this paper, the relation between microstructural and magnetic properties of thin obliquely deposited films has been studied by means of numerical techniques using a modified Netzelmann approach.
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Electrodynamic Calculation of Effective Electromagnetic Parameters of a Dielectric Medium with Metallic Nanoparticles of a Given Size

TL;DR: In this article, the frequency dependence of the effective complex permittivity and effective complex permeability of a heterostructure based on a dielectric medium containing metallic nanoparticles of spherical shape is calculated by an original method.