Search Results - "Tugarinov, V.I."

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  1. 1

    Weak ferromagnetism along the triad axis of FeB[O.sub.3] crystals by Ovchinnikov, S.G, Rudenko, V.V, Tugarinov, V.I

    Published in Physics of the solid state (01-10-2016)
    “…Weak ferromagnetic moment along the triad axis of FeB[O.sub.3] crystals has been calculated on the basis of the single-ion model taking into account the cubic…”
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  2. 2

    Continual approach at T=0 in the mean field theory of incommensurate magnetic states in the frustrated Heisenberg ferromagnet with an easy axis anisotropy by Martynov, S.N., Tugarinov, V.I., Martynov, A.S.

    “…The algorithm of approximate solution was developed for the differential equation describing the anharmonical change of the spin orientation angle in the model…”
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  3. 3

    Magnetic resonance studies of mixed chalcospinel CuCr2SxSe4−x (x = 0; 2) and CoxCu1−xCr2S4 (x = 0.1; 0.2) nanocrystals with strong interparticle interactions by Pankrats, A.I., Vorotynov, A.M., Tugarinov, V.I., Zharkov, S.M., Zeer, G.M., Ramasamy, K., Gupta, A.

    “…•Strong interparticle interaction leads to high blocking temperatures in samples.•Gapped resonance spectrums are established below the freezing…”
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  4. 4
  5. 5

    Uniaxial magnetic anisotropy of rhombohedral CoC[O.sub.3] crystals at T = 0 K by Men'shikov, V.V, Rudenko, V.V, Tugarinov, V.I, Vorotynov, A.M, Ovchinnikov, S.G

    Published in Physics of the solid state (01-03-2014)
    “…A method for calculating the contribution of exchange interaction to uniaxial anisotropy with the use of g factors has been worked out using CoC[O.sub.3]…”
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  6. 6

    Electron spin resonance in Cu1−xFexCr2Se4 nanoparticles synthesized with the thermal decomposition method by Edelman, I.S., Zharkov, S.M., Pankrats, A.I., Vorotynov, A.M., Tugarinov, V.I., Ivantsov, R.D., Petrov, D.A., Velikanov, D.A., Lin, Chun-Rong, Chen, Chin-Chang, Tseng, Yaw-Teng, Hsu, Hua-Shu

    “…•Cu1−xFexCr2Se4 nanoparticles were synthesized as (111) nanocrystalline plates.•Nanoparticles tend to form stacks consisting of plates attached “face to…”
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  7. 7

    The generalized method of quantitative description of the uniaxial anisotropy in weak ferromagnet rhombohedral calcite type structure crystals with S-state ions by Bondarenko, G.V., Ovchinnikov, S.G., Rudenko, V.V., Sosnin, V.M., Tugarinov, V.I., Vorotynov, A.M.

    “…The method for investigation of the uniaxial and hexagonal anisotropies in weakly ferromagnetic rhombohedral FeBO3 crystals with the Fe2+ magnetic impurity…”
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  8. 8

    Magnetic-resonance and thermophysical studies of the magnetic phase diagram for a Gd[Fe.sub.2.1][Ga.sub.0.9] [.sub.4] single crystal by Pankrats, A.I, Petrakovskii, G.A, Tugarinov, V.I, Kartashev, A.V, Temerov, V.L

    “…The antiferromagnetic resonance, heat capacity, magnetic properties, and magnetic phase diagram of a Gd[Fe.sub.3][(B[O.sub.3]).sub.4] crystal in which some of…”
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  9. 9

    Temperature dependence of the uniaxial magnetic anisotropy of rhombohedral antiferromagnetic crystals with ions in the S state by Ovchinnikov, S. G., Rudenko, V. V., Tugarinov, V. I.

    Published in Physics of the solid state (2010)
    “…The contributions of the anisotropic exchange to the firstand second-order uniaxial anisotropy constants have been calculated for hematite at T = 0 K and…”
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  10. 10

    Magnetic resonance in a Cu-Cr-S structure by Vorotynov, A. M., Abramova, G. M., Pankrats, A. I., Petrakovskii, G. A., Zharkov, S. M., Zeer, G. M., Tugarinov, V. I., Rautskii, M. V., Sokolov, V. V.

    “…A layered Cu-Cr-S structure composed of single-crystal CuCrS 2 layers and thin CuCr 2 S 4 plates embedded in them has been investigated by the magnetic…”
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  11. 11

    Magnetic resonance in new copper oxide Cu 5Bi 2B 4O 14 with triclinic symmetry by Pankrats, A.I, Tugarinov, V.I, Sablina, K.A

    “…The frequency-field and angular dependencies of magnetic resonance in new copper oxide Cu 5Bi 2B 4O 14 with triclinic symmetry are explored at T=4.2 K. It is…”
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  12. 12
  13. 13

    Magnetic anisotropy of the rhombohedral antiferromagntic crystals with S-ions. A quantitative estimation by Men'shikov, V.V., Ovchinnikov, S.G., Rudenko, V.V., Sudakov, A.N., Tugarinov, V.I., Vorotynov, A.M.

    “…The method to investigate the “single-ion” exchange anisotropy (as predicted by pair model) is treated by means of exploration of several isostructural…”
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