RAS Kapitza Institute RUS

Alexey B. Drovosekov
List of publications



  1. Ferromagnetic resonance in multilayer [Fe/Cr]n structures with noncollinear magnetic ordering
    JETP Lett. 67, 727 (1998)
    co-authors: N.M. Kreines, D.I. Kholin, V.F. Mescheriakov, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  2. The observation of non-homogeneous FMR modes in multilayer Fe/Cr structures
    JMMM 198-199, 455 (1999)
    co-authors: D.I. Kholin, A.N. Kolmogorov, N.M. Kreines, V.F. Mescheriakov, M.A. Miliayev, L.N. Romashev and V.V. Ustinov

  3. Inhomogeneous ferromagnetic resonance modes in [Fe/Cr]n superlattices with a high biquadratic exchange constant
    JETP 89, 986 (1999)
    co-authors: O.V. Zhotikova, N.M. Kreines, D.I. Kholin, V.F. Meshcheryakov, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  4. FMR study of interlayer coupling in Fe/Cr superlattices: temperature dependence
    Phys.Met.Metallogr. 91, S74 (2001)
    co-authors: D.I. Kholin, N.M. Kreines, V.F. Mescheriakov, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  5. Inhomogeneous FMR modes in [Fe/Cr]n superlattices with a strong biquadratic coupling
    Phys.Met.Metallogr. 91, S38 (2001)
    co-authors: D.I. Kholin, N.M. Kreines, V.F. Mescheriakov, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  6. Temperature dependence of interlayer coupling in Fe/Cr superlattices - FMR studies
    JMMM 226, 1779 (2001)
    co-authors: D.I. Kholin, N.M. Kreines, O.V. Zhotikova and S.O. Demokritov

  7. Interlayer interaction in a Fe/Cr/Fe system: Dependence on the thickness of the chrome interlayer and on temperature
    JETP 95, 1062 (2002)
    co-authors: S.O. Demokritov, N.M. Kreines, H. Nembach, M. Rickart and D.I. Kholin

  8. Temperature dependence of interlayer coupling in a Fe/Cr/Fe wedge sample. MOKE and MBLS studies
    JMMM 258-259, 391 (2003)
    co-authors: S.O. Demokritov, D.I. Kholin and N.M. Kreines

  9. Temperature dependence of interlayer coupling in Fe/Cr/Fe wedge samples: static and dynamic studies
    JMMM 272-276, E963 (2004)
    co-authors: S.O. Demokritov, D.I. Kholin, N.M. Kreines, H. Nembach and M. Rickart

  10. Investigations of Fe/Cr multilayer structures with ultrathin iron layers
    JMMM 290, 157 (2005)
    co-authors: N.M. Kreines, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  11. Noncollinear interlayer exchange in Fe/Cr/Fe magnetic structures with different interface roughnesses
    Phys. Met. Metallogr. 101, S67 (2006)
    co-authors: D.I. Kholin, S.O. Demokritov, M. Rickart and N.M. Kreines

  12. Magnetization and FMR studies of [Fe/Cr]n structures with ultrathin iron layers
    Phys. stat. sol. C3, 109 (2006)
    co-authors: N.M. Kreines, M.A. Milyaev, L.N. Romashev and V.V. Ustinov

  13. Spin-glass state of Fe/Cr multilayer structures with ultrathin iron layers
    JETP Lett. 88, 118 (2008)
    co-authors: N.M. Kreines, D.I. Kholin, A.V. Korolev, M.A. Milyaev, L.N. Romashev and V.V. Ustinov
  • Investigations of magnetic states in Fe/Cr multilayer structures
    Ph.D. Thesis in Physics, Kapitza Insitute (2008)
    Supervisor Prof. N.M. Kreines
  1. Magnetic states of multilayer Fe/Cr structures with ultrathin iron layers
    Low Temp. Phys. 36, 808 (2010)
    co-authors: N.M. Kreines, D.I. Kholin

  2. Interlayer coupling in Fe/Cr/Gd multilayer structures
    JETP 120, 1041 (2015)
    co-authors: N.M. Kreines, A.O. Savitsky, E.A. Kravtsov, D.V. Blagodatkov, M.V. Ryabukhina, M.A. Milyaev, V.V. Ustinov, E.M. Pashaev, I.A. Subbotin, G.V. Prutskov

  3. Iron borate films: Synthesis and characterization
    JMMM 417, 338 (2016)
    co-authors: S. Yagupov, M. Strugatsky, K. Seleznyova, Y. Mogilenec, E. Milyukova, E. Maksimova, I. Nauhatsky, N. Kreines, J. Kliava

  4. Magnetic anisotropy peculiarities of high-temperature ferromagnetic MnxSi1-x (x≈0.5) alloy films
    EPL 115(3), 37008 (2016)
    co-authors: N.M. Kreines, A.O. Savitsky, S.V. Kapelnitsky, V.V. Rylkov, V.V. Tugushev, G.V. Prutskov, O.A. Novodvorskii, E.A. Cherebilo, E.T. Kulatov, Y. Wang, S. Zhou

  5. Magnetic anisotropy of polycrystalline high-temperature ferromagnetic MnxSi1-x (x≈0.5) alloy films
    JMMM 429, 305 (2017)
    co-authors: N.M. Kreines, A.O. Savitsky, S.V. Kapelnitsky, V.V. Rylkov, V.V. Tugushev, G.V. Prutskov, O.A. Novodvorskii, A.V. Shorokhova, Y.Wang, S. Zhou

  6. Magnetization and ferromagnetic resonance in a Fe/Gd multilayer: experiment and modelling
    J. Phys.: Condens. Matter 29, 115802 (2017)
    co-authors: N.M. Kreines, A.O. Savitsky, E.A. Kravtsov, M.V. Ryabukhina, V.V. Proglyado, V.V. Ustinov

  7. Nature of magnetocrystalline anisotropy in the basal plane of iron borate
    JMMM 442, 417 (2017)
    co-authors: M. Strugatsky, K. Seleznyova, S. Yagupov, J. Kliava

  8. Engineering of high-temperature ferromagnetic Si1-xMnx (x≈0.5) alloyed films by pulsed laser deposition: Effect of laser fluence
    JMMM 459, 206 (2018)
    Parul Pandey, M. Wang, C. Xu, S.N. Nikolaev, K.Yu. Chernoglazov, A.O. Savitsky, N.M. Kreines, K.I. Maslakov, E.A. Cherebilo, V.A. Mikhalevsky, O.A. Novodvorskii, V.V. Tugushev, V.V. Rylkov, M. Helm, S. Zhou

  9. Modification of the Ferromagnetic Properties of Si1-xMnx Thin Films Synthesized by Pulsed Laser Deposition with a Variation in the Buffer-Gas Pressure
    Semiconductors 52(11), 1424 (2018)
    co-authors: O.A. Novodvorsky, V.A. Mikhalevsky, D.S. Gusev, A.A. Lotin, L.S. Parshina, O.D. Khramova, E.A. Cherebylo, V.V. Rylkov, S.N. Nikolaev, K.Y. Chernoglazov, K.I. Maslakov

  10. Effect of Laser Fluence on Magnetic Properties of Thin MnxSi1-x (x≈0.5) Films Prepared by Pulsed Laser Deposition
    co-authors: A.O. Savitsky, N.M. Kreines, V.V. Rylkov, S.N.Nikolaev, K.Y. Chernoglazov, A,N, Taldenkov, E.A. Cherebylo, V.A. Mikhalevskii, O.A. Novodvorskii, K.I. Maslakov, P, Pandey, S. Zhou
    Physics of the Solid State 60(11), 2188 (2018)

  11. Effect of Cr Spacer on Structural and Magnetic Properties of Fe/Gd Multilayers
    JETP 127(4), 742 (2018)
    co-authors: M.V. Ryabukhina, D.I. Kholin, N.M. Kreines, A.O. Savitsky, E.A. Kravtsov, V.V. Proglyado, V.V. Ustinov, T. Keller, Yu.N. Khaydukov, Y. Choi, D. Haskel

  12. Twisted magnetization states and inhomogeneous resonance modes in a Fe/Gd ferrimagnetic multilayer
    JMMM 745, 668 (2019) doi: 10.1016/j.jmmm.2018.12.022
    co-authors: A.O. Savitsky, D.I. Kholin, N,M, Kreines, V.V. Proglyado, M.V. Makarova, E.A. Kravtsov, V.V. Ustinov

  13. Unusual Behavior of the Coercive Field in a (CoFeB)(x)(LiNbOy)(100-x) Nanocomposite with a High Content of Magnetic Ions in an Insulating Matrix
    JETP 128(1), 115 (2019)
    co-authors: V,V. Rylkov, A.N. Taldenkov, S.N. Nikolaev, O.G. Udalov, A.V. Emelyanov, A.V. Sitnikov, K.Y. Chernoglazov, V.A. Demin, O.A. Novodvorskii, A.S. Vedeneev, A.S. Bugaev

  14. Electron magnetic resonance of iron-gallium borate single crystals
    Journal of Applied Physics 125(22), 223905 (2019)
    co-authors: K. Seleznyova, M. Strugatsky, S. Yagupov, Y. Mogilenec, N. Kreines, P. Rosa, J. Kliava

  15. Mechanisms of FMR line broadening in CoFeB-LiNbO3 granular films in the vicinity of metal-insulator transition
    JMMM 495, UNSP 165875 (2020)
    co-authors: N.M. Kreines, A.S. Barkalova, S.N. Nikolaev, V.V. Rylkov, A.V. Sitnikov

  16. Properties of nanocomposites with different concentrations of magnetic ions in an insulating matrix
    IEEE Magnetics Letters 10, 2509504 (2019)
    co-authors: V. Rylkov, A. Sitnikov, S. Nikolaev, A. Emelyanov, K. Chernohlazov, K. Nikiruy, M. Blinov, E. Fadeev, A. Taldenkov, V. Demin, A. Vedeneev, A. Bugaev, A. Granovsky

  17. Anisotropic energy gap of low-frequency AFMR mode in Fe(x)Ga(1-x)BO3 single crystals Journal of Physics CS 1400, 044016 (2019)
    co-authors: Y. Mogilenec, K. Seleznyova, M. Strugatsky, S. Yagupov, N. Kreines, J. Kliava

  18. Magnetic Properties of Layered Ferrimagnetic Structures Based on Gd and Transition 3d Metals
    JETP 131(1), SI 149 (2020)
    co-authors: D.I. Kholin, N.M. Kreinies

  19. Effect of Slow Ion Relaxation at Ferromagnetic Resonance in a CoFeB-LiNbO Metal-Insulator Nanocomposite
    JETP Lett. 112(2), 84 (2020)
    co-authors: N.M. Kreines, A.S. Barkalova, S.N. Nikolaev, A.V. Sitnikov, V.V. Rylkov

  20. Evolution of the Ferromagnetism of MnxSi1-x (x≈0.5) Films Produced by Laser Synthesis on c- and r-Cut Sapphire Substrates as the Laser Energy Density on the Target Changes
    JETP 131(4), 618 (2020)
    co-authors: L.S. Parshina, O.A. Novodvorsky, O.D. Khramova, D.S. Gusev, E.A. Cherebylo, A.S. Barkalova, K.Y. Chernoglazov, A.S. Vedeneev, V.V. Rylkov

  21. Magnetocaloric effect in nanosystems based on ferromagnets with different Curie temperatures
    JETP 132(1), 79 (2021)
    co-authors: M.A. Kuznetzov, A.A. Fraerman

  22. Laser synthesis of thin MnxSi1-x (x≈0,5) on c- and r-Al2O3 substrates at different laser energy densities at the target
    Chaos, Solitons and Fractals 142, 110457 (2021)
    co-authors: O. Novodvorsky, L. Parshina, O. Khramova, D. Gusev, A. Barkalova, V. Mikhalevsky, E. Cherebilo, V. Rylkov

  23. Influence of Substrate Crystal Structure on the Magnetic Anisotropy of MnxSi1–x (x≈0.5) Films
    Phys. Solid State , (2021)
    co-authors: L.S. Parshina, O.D. Khramova, D.S. Gusev, O.A. Novodvorsky, A.N. Taldenkov, K.Yu. Chernoglazov, V.V. Rylkov

  24. Magnetic Resonance in Metal-Insulator Nanogranular Composites with Paramagnetic Ions in an Insulating Matrix
    JETP 134(6), 725 (2022)
    co-authors: N.M. Kreines, O.A. Kovalev, A.V. Sitnikov, S.N. Nikolaev, V.V. Rylkov

  25. Temperature Evolution of Magnetic Resonance Spectra in Metal-Insulator Nanogranular Composites with Paramagnetic Ions in an Insulating Matrix
    JETP 135(3), 372 (2022)
    co-authors: N.M. Kreines, O.A. Kovalev, A.V. Sitnikov, S.N. Nikolaev, V.V. Rylkov

  26. Antiferromagnetic resonance in iron borate films: Dzyaloshinskii-Moriya field and isotropic energy gap
    Applied Physics A128, 1055 (2022)
    co-authors: K. Seleznyova, Yu. Mogilenec, D. Prilepsky, M. Strugatsky, S. Yagupov, N. Kreines, and J. Kliava
  • Deformation-induced increase of the isotropic energy gap in iron borate epitaxial film
    VII Euro-Asian Symposium "Trends in MAGnetism" (2022)
    co-authors: K. Seleznyova, D. Prilepsky, Yu.A. Mogilenec, M.B. Strugatsky, S.V. Yagupov, N. Kreines, J. Kliava


  1. The origin of the EPR line (g=4) in magnetic nanocomposites is a manifestation of two-quantum transitions in ferromagnetic granules
    A.B. Drovosekov, M.Yu. Dmitrieva, A.V. Sitnikova, C.H.Nikolaev, V.V.Rylkov
    JETP , (2024)