Образец цитирования:
Ю. Е. Лозовик, С. П. Меркулова, А. А. Соколик, “Коллективные электронные явления в графене”, УФН, 178:7 (2008), 757–776; Phys. Usp., 51:7 (2008), 727–744
Alexander J Silenko, “Foldy-Wouthuysen transformation and multiwave states of a graphene electron in external fields and free (2+1)-space”, Phys. Scr., 99:2 (2024), 025905
O. S. Lebedeva, N. G. Lebedev, A. S. Chibrikov, E. N. Shamina, “Elastic Conductivity of Germanene Ribbons with Acceptor Defects”, Russ. J. Phys. Chem. B, 18:3 (2024), 794
O. S. Lebedeva, N. G. Lebedev, A. S. Chibrikov, E. N. Shamina, “Elastic conductivity of germanene nanoribbons with acceptor defects”, Himičeskaâ fizika, 43:5 (2024), 100
Radyslav Panteleimonov, “WAYS OF CHANGING THE STRUCTURAL-MORPHOLOGICAL, PHYSICO-CHEMICAL AND ELECTRICAL PROPERTIES OF GRAPHENES”, Ukr. Chem. Journ., 88:7 (2022), 29
Pekh P.L. Ratnikov V P. Silin A.P., “Phase Diagram of Electron-Hole Liquid in Monolayer Heterostructures Based on Transition Metal Dichalcogenides”, J. Exp. Theor. Phys., 133:4 (2021), 494–507
Lebedeva O.S., Lebedev N.G., Lyapkosova I.A., “Elastic Conductivity of Germanene “Arm-Chair” Nanoribbons With Donor Impurities”, St. Petersb. Polytech. Univ. J.-Phys. Math., 14:1 (2021), 8–20
А. А. Гладких, Г. Г. Малинецкий, “Нелинейное уравнение Дирака для графена”, Матем. моделирование, 32:8 (2020), 43–56; A. A. Gladkikh, G. G. Malinetskii, “Nonlinear Dirac equation for graphene”, Math. Models Comput. Simul., 13:2 (2021), 301–310
Ratnikov V P., “Excitons in Planar Quantum Wells Based on Transition Metal Dichalcogenides”, Phys. Rev. B, 102:8 (2020), 085303
Lebedeva O.S. Lebedev N.G. Lyapkosova I.A., “The Effect of Isomorphic Impurities on the Elastic Conductivity of Dirac Structures”, J. Phys.-Condes. Matter, 32:14 (2020), 145301
A.V. Jebo, A.V. Aleshkov, N.G. Uvarova, New forms of production and entrepreneurship in the coordinates of neo-industrial development of the economy: a collection of articles based on the materials of the international scientific and practical full-time, correspondence conference on February 21, 2020, 2020
Askerzade I.N. Askerbeyli R.T., “Plasmon Spectrum of Graphene Monolayer on Substrate”, Mod. Phys. Lett. B, 33:9 (2019), 1950102
Lebedeva O.S. Lebedev N.G. Lyapkosova I.A., “Elastic Conductivity of Silicene and Germanene Nanoribbons”, St. Petersb. Polytech. Univ. J.-Phys. Math., 12:4 (2019), 38–49
Pavel V. Ratnikov, Handbook of Graphene, 2019, 29
Sudorgin S.A. Lebedev N.G., “Transport properties of bilayer graphene nanoribbons with hydrogen adatoms”, Russ. J. Phys. Chem. B, 10:5 (2016), 844–850
Andrey Andreevich Gladkikh, Georgii Gennadyevich Malinetskii, “Nonlinear Dirac equation for graphene”, KIAM Prepr., 2016, no. 145, 1
М. Ю. Каган, В. А. Мицкан, М. М. Коровушкин, “Аномальная сверхпроводимость и сверхтекучесть в фермионных системах с отталкиванием”, УФН, 185:8 (2015), 785–815; M. Yu. Kagan, V. A. Mitskan, M. M. Korovushkin, “Anomalous superconductivity and superfluidity in repulsive fermion systems”, Phys. Usp., 58:8 (2015), 733–761
Г. С. Иванченко, Д. С. Колесников, Ю. В. Невзорова, “Эффект переключения проводимости графеновых нанолент во внешнем электрическом поле”, Вестн. Волгогр. гос. ун-та. Сер. 1, Мат. Физ., 2015, № 5(30), 84–93