Образец цитирования:
С. С. Сосин, Л. А. Прозорова, А. И. Смирнов, “Новые магнитные состояния в кристаллах”, УФН, 175:1 (2005), 92–99; Phys. Usp., 48:1 (2005), 83–90
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva, “Influence of Magnetic Field on Phase Transitions in the Antiferromagnetic Potts Model”, Phys. Metals Metallogr., 125:6 (2024), 563
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva, “Phase Transitions in a Frustrated Four-Vertex Potts Model on a Hexagonal Lattice in a Magnetic Field”, Phys. Metals Metallogr., 124:5 (2023), 429
L M Volkova, “Orthorhombic and triclinic modifications of the arsenate Cu4O(AsO4)2 and isotypic phosphates Cu4O(PO4)2: strongly frustrated antiferromagnetics”, Phys. Scr., 98:2 (2023), 025824
K. Sh Murtazaev, M.A. Magomedov, A.K. Murtazaev, M.K. Ramazanov, “Phase diagram of the antiferromagnetic Ising model on a body-centered cubic lattice with competing exchange interactions under a magnetic field”, Physica E: Low-dimensional Systems and Nanostructures, 148 (2023), 115646
Д. Р. Курбанова, А. К. Муртазаев, М. К. Рамазанов, М. А. Магомедов, “Фазовая диаграмма четырехвершинной модели Поттса с конкурирующими обменными взаимодействиями”, Письма в ЖЭТФ, 115:8 (2022), 505–511; D. R. Kurbanova, A. K. Murtazaev, M. K. Ramazanov, M. A. Magomedov, “Phase diagram of the four-vertex Potts model with competing exchange interactions”, JETP Letters, 115:8 (2022), 471–476
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva, A. A. Murtazaeva, “Studying the Effect of Strong Magnetic Fields on the Phase Transitions of the Frustrated Potts Model with a Number of Spin States q = 4”, Phys. Metals Metallogr., 123:3 (2022), 290
M.K. Ramazanov, A.K. Murtazaev, M.A. Magomedov, “Phase transitions in the frustrated Potts model in the magnetic field”, Physica E: Low-dimensional Systems and Nanostructures, 140 (2022), 115226
M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, “Frustrated Potts Model with Number of Spin States q = 4 in Magnetic Field”, J. Exp. Theor. Phys., 134:6 (2022), 693
Murtazaev A.K. Badiev M.K. Ramazanov M.K. Magomedov M.A., “Effect of a Magnetic Field on the Phase Transitions in the Heisenberg Model on a Triangular Lattice”, Phys. Solid State, 63:8 (2021), 1262–1266
Murtazaev A. Badiev M. Ramazanov M. Magomedov M., “Phase Transitions in the Heisenberg Model on a Layered Triangular Lattice in a Magnetic Field”, Phase Transit., 94:6-8 (2021), 394–403
М. К. Рамазанов, А. К. Муртазаев, М. А. Магомедов, М. К. Мазагаева, “Фазовые переходы и магнитные свойства модели Поттса с числом состояний спина q=4 на гексагональной решетке в слабых магнитных полях”, Письма в ЖЭТФ, 114:11 (2021), 762–767; M. K. Ramazanov, A. K. Murtazaev, M. A. Magomedov, M. K. Mazagaeva, “Phase transitions and the magnetic properties of the Potts model with four spin states on a hexagonal lattice in low magnetic fields”, JETP Letters, 114:11 (2021), 693–698
Drokina T.V., Petrakovskii G.A., Bayukov O.A., Molokeev M.S., Vorotynov A.M., Popkov S.I., Velikanov D.A., “Physical Properties of a Frustrated Quasi-One-Dimensional Nacufe2(Vo4)(3) Magnet and Effect of Chemical Pressure Induced By the Substitution of Sodium For Lithium”, Phys. Solid State, 62:2 (2020), 297–307
Drokina T.V., Molokeev M.S., Velikanov D.A., Petrakovskii G.A., Bayukov O.A., “Hofeti2O7: Synthesis, Peculiarities of the Crystal Structure, and Magnetic Properties”, Phys. Solid State, 62:3 (2020), 464–471
М. К. Рамазанов, А. К. Муртазаев, “Фазовая диаграмма антиферромагнитной модели Гейзенберга на кубической решетке”, Письма в ЖЭТФ, 109:9 (2019), 610–614; M. K. Ramazanov, A. K. Murtazaev, “Phase diagram of the antiferromagnetic Heisenberg model on a cubic lattice”, JETP Letters, 109:9 (2019), 589–593
Murtazaev A.K. Ramazanov M.K. Kurbanova D.R. Magomedov M.A. Badiev M.K. Mazagaeva M.K., “Phase Transitions and the Critical Properties of the Heisenberg Model on a Body-Centered Cubic Lattice”, Phys. Solid State, 61:6 (2019), 1107–1112
Volkova L.M., Marinin D.V., “Spin-Frustrated Pyrochlore Chains in the Volcanic Mineral Kamchatkite (Kcu3Ocl(So4)(2))”, Phys. Chem. Miner., 45:7 (2018), 655–668
А. К. Муртазаев, М. А. Магомедов, М. К. Рамазанов, “Фазовая диаграмма и структура основного состояния антиферромагнитной модели Изинга на объемно-центрированной кубической решетке”, Письма в ЖЭТФ, 107:4 (2018), 265–269; A. K. Murtazaev, M. A. Magomedov, M. K. Ramazanov, “Phase diagram and structure of the ground state of the antiferromagnetic Ising model on a body-centered cubic lattice”, JETP Letters, 107:4 (2018), 259–263
Volkova L.M. Marinin D.V., “Antiferromagnetic Spin-Frustrated Layers of Corner-Sharing Cu-4 Tetrahedra on the Kagome Lattice in Volcanic Minerals Cu5O2(Vo4)(2)(Cucl), Nacu5O2(Seo3)(2)Cl-3, and K2Cu5Cl8(Oh)(4)Center Dot 2H(2)O”, J. Phys.-Condes. Matter, 30:42 (2018), 425801
Volkova L.M., Marinin D.V., “Frustrated Antiferromagnetic Spin Chains of Edge-Sharing Tetrahedra in Volcanic Minerals K3Cu3(Fe0.82Al0.18)O2(SO4)4 and K4Cu4O2(SO4)4MeCl”, J. Supercond. Nov. Magn, 30:4 (2017), 959–971
М. К. Рамазанов, А. К. Муртазаев, “Фазовые переходы и критические свойства в антиферромагнитной модели Гейзенберга на слоистой кубической решетке”, Письма в ЖЭТФ, 106:2 (2017), 72–77; M. K. Ramazanov, A. K. Murtazaev, “Phase transitions and critical properties in the antiferromagnetic Heisenberg model on a layered cubic lattice”, JETP Letters, 106:2 (2017), 86–91