N
N. V. Baranov
Researcher at Russian Academy of Sciences
Publications - 88
Citations - 879
N. V. Baranov is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Magnetization & Antiferromagnetism. The author has an hindex of 14, co-authored 85 publications receiving 657 citations. Previous affiliations of N. V. Baranov include Ural Federal University & Ural State University.
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Journal ArticleDOI
Giant adiabatic temperature change in FeRh alloys evidenced by direct measurements under cyclic conditions
Alisa Chirkova,Konstantin P. Skokov,Konstantin P. Skokov,Ludwig Schultz,N. V. Baranov,N. V. Baranov,Oliver Gutfleisch,T.G. Woodcock +7 more
TL;DR: In this article, the ΔT ad was shown to be 9.2 K on the first application of magnetic field of Δμ 0 H ǫ = 1.9 T and it remains as high as 6.2K during the cycling in alternating field of the same magnitude.
Journal ArticleDOI
The effect of the microstructure on the antiferromagnetic to ferromagnetic transition in FeRh alloys
Alisa Chirkova,F. Bittner,K. Nenkov,N. V. Baranov,N. V. Baranov,Ludwig Schultz,Kornelius Nielsch,T.G. Woodcock +7 more
TL;DR: In this paper, a detailed study of Fe48Rh52 samples heat treated at different temperatures (1123 K, 1273 K and 1423 K) has been performed using scanning and transmission electron microscopy, energy dispersive x-ray spectroscopy, xray diffraction and magnetic measurements.
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Electronic properties of a distorted kagome lattice antiferromagnet Dy 3 Ru 4 Al 12
D.I. Gorbunov,D.I. Gorbunov,M. S. Henriques,M. S. Henriques,Alexander V. Andreev,Arsen Gukasov,Václav Petříček,N. V. Baranov,N. V. Baranov,Yu. Skourski,Václav Eigner,M. Paukov,Jan Prokleška,António Pereira Gonçalves +13 more
TL;DR: In this article, the authors studied the properties of a hexagonal compound with a non-collinear antiferromagnetic structure with a propagation vector (1/2 0 1/2), which is consistent with the monoclinic Shubnikov group.
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A cluster-glass magnetic state in R5Pd2 (R = Ho, Tb) compounds evidenced by AC-susceptibility and neutron scattering measurements.
A. F. Gubkin,A. F. Gubkin,E. A. Sherstobitova,P B Terentyev,Andreas Hoser,N. V. Baranov,N. V. Baranov +6 more
TL;DR: The results show that both compounds undergo cluster-glass freezing upon cooling below Tf and an unusual magnetic state in compounds with a high rare-earth concentration may be associated with the layered type of their crystal structure and with substantial atomic disorder, which results in frustrations in the magnetic subsystem.
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Magnetic hysteresis in a molecular Ising ferrimagnet: Glauber dynamics approach
TL;DR: In this article, a theory of hysteresis phenomena based on the Glauber stochastic dynamics is presented. But the model is not applicable to other Co-based molecular magnets.