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Zagrebin Mikhail Aleksandrovich

Publications in Math-Net.Ru

  1. Magnetic properties of Fe–Ge with low atomic content of Ge: first-principles modeling

    Fizika Tverdogo Tela, 67:11 (2025),  2227–2231
  2. Computer modeling of magnetic properties of disordered BCC phase of Fe$_{100-x}$Me$_x$ alloys (Me = AL, GA, GE)

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 17:3 (2025),  47–54
  3. Effect of rare-earth element doping on Fe–Ga alloys properties: ab initio and Monte Carlo modelling

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 18:2 (2025),  18–30
  4. Magnetic exchange parameters and the Curie temperature of Fe$_{75}$Ga$_{25}$ alloy

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 16:3 (2024),  62–69
  5. Electronic and magnetic properties of the Mn$_2$CrSn Heusler alloy: first-principles investigations

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 16:1 (2024),  49–55
  6. Magnetic properties and electronic structure of half-Heusler alloys $\mathrm{FeRhSb}_{1-x}Z_x$ ($Z = \mathrm{P, As, Sn, Si, Ge, Ga, In, Al}$)

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 17:4 (2024),  42–50
  7. Kinetics of structural phase transitions in the Fe$_{80.5}$Ga$_{19.5}$ alloy

    Fizika Tverdogo Tela, 63:11 (2021),  1801–1806
  8. Magnetostriction of the Fe$_{75}$Ga$_{25-x}Z_{x}$ ($Z$ = Al, Ge, Si) alloys: calculation by the magnetic torque method

    Fizika Tverdogo Tela, 63:11 (2021),  1745–1750
  9. First-principles studies of the phase transitions in Fe-Si alloys

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 13:1 (2021),  52–58
  10. Structural, magnetic and magnetocaloric properties of Fe-Ga alloys

    Chelyab. Fiz.-Mat. Zh., 5:4(2) (2020),  580–591
  11. Kinetics of phase transformations in Fe-Ga alloys

    Chelyab. Fiz.-Mat. Zh., 5:4(1) (2020),  471–479
  12. Magnetocrystalline anisotropy calculation of Fe-Ga alloys by the magnetic torque method

    Chelyab. Fiz.-Mat. Zh., 5:2 (2020),  174–185
  13. Temperature and pressure effects on the Fermi surface nesting in Ni$_2$MnGa

    Chelyab. Fiz.-Mat. Zh., 5:1 (2020),  120–130
  14. A study of the structure and magnetic properties of FeRh$_{1-x}$Ir$_{x}$ ($x$ = 0.5–1) alloys by first-principles methods

    Fizika Tverdogo Tela, 62:6 (2020),  855–859
  15. Electronic and magnetic properties of DyFe$_{4}$Ge$_{2}$ alloys near a phase transition

    Fizika Tverdogo Tela, 62:6 (2020),  823–828
  16. Theoretical approach to investigation of the magnetic and magnetocaloric properties of Heusler Ni–Mn–Ga alloys

    Fizika Tverdogo Tela, 62:5 (2020),  697–704
  17. Ab initio studies of phase transformations in Fe$_{100-x}$Si$_{x}$

    Fizika Tverdogo Tela, 62:5 (2020),  655–659
  18. Volume magnetostriction of $\mathrm{Fe}$-$\mathrm{Ga}$ alloys: calculation from first principles

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 12:2 (2020),  57–62
  19. Structural and elastic properties of $\mathrm{Fe}$-$\mathrm{Ge}$ alloys: ab initio studies

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 12:2 (2020),  49–56
  20. Ab initio calculation of vacancy formation energy in antiperovskite Mn$_3$GaC

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 11:2 (2019),  58–64
  21. First-principles investigations of reference states of Co$_2$CrIn Heusler alloys

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 11:1 (2019),  59–66
  22. Modelling of rhombohedral magnetostriction in Fe–Ga alloys

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 12:2 (2019),  158–165
  23. Ab initio study of the structural, magnetic, electronic, and thermodynamic properties of Pd$_{2}$Mn$Z$ ($Z$ = Ga, Ge, As) Heusler alloys

    Fizika Tverdogo Tela, 60:6 (2018),  1127–1134
  24. First-principles study of the structure and magnetic properties of Fe$_{8}$Rh$_{8-x}Z_{x}$ ($Z$ = Mn, Pt, Co; $x$ = 1, 2 è 3) alloys

    Fizika Tverdogo Tela, 60:6 (2018),  1122–1126
  25. Investigations of properties of Fe-Ga alloys from ab initio calculations

    Chelyab. Fiz.-Mat. Zh., 2:2 (2017),  231–240
  26. Ab initio calculation of structure and magnetic properties of Fe${}_{1-x}$Ga${}_x$ alloys

    Chelyab. Fiz.-Mat. Zh., 1:4 (2016),  112–121
  27. Reference states of Cr-doped Ni-Co-Mn-(In, Sn) alloys: insights from first principles study

    Chelyab. Fiz.-Mat. Zh., 1:2 (2016),  117–123
  28. Phase diagrams of Heusler alloys with inversion of the exchange interaction

    Pis'ma v Zh. Èksper. Teoret. Fiz., 85:11 (2007),  689–693

  29. History of the Dissertation Council 24.2.431.01 (Ä 212.296.03) (2012–2022)

    Chelyab. Fiz.-Mat. Zh., 8:3 (2023),  436–457
  30. Ãåîðãèé Àíàòîëüåâè÷ Ñâèðèäþê (ê þáèëåþ)

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 15:1 (2022),  123–127
  31. To the 65th anniversary of Vasiliy Dmitrievich Buchelnikov

    Chelyab. Fiz.-Mat. Zh., 5:2 (2020),  135–139
  32. To the 65th anniversary of Vasiliy Buchel'nikov

    Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 12:2 (2020),  63–65
  33. To the 65th anniversary of professor G. A. Sviridyuk

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 10:2 (2017),  155–158


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