Образец цитирования:
А. В. Гуревич, Е. Е. Цедилина, “Движение и расплывание неоднородностей в плазме”, УФН, 91:4 (1967), 609–643; Phys. Usp., 10:2 (1967), 214–236
N. A. Aidakina, S. V. Korobkov, M. E. Gushchin, I. Yu. Zudin, A. V. Strikovskiy, “Experimental demonstration of the “unipolar cell” dynamics in a large laboratory magnetoplasma”, Physics of Plasmas, 31:12 (2024)
Frolov V.L. Luk'yanova R.Yu. Ryabov A.O. Bolotin I.A., “Satellite Measurements of Plasma Disturbances and Electric Currents Induced in the Midlatitude Ionosphere Modified By High-Power Hf Radio Waves”, Cosmic Res., 59:4 (2021), 231–249
N. Aidakina, M. Gushchin, I. Zudin, S. Korobkov, A. Strikovskiy, “Density irregularities, currents, and magnetic fields generated by pulsed local rf heating of a magnetoplasma: Disturbances in rf antenna vicinity”, Physics of Plasmas, 25:12 (2018)
N. Aidakina, M. Gushchin, I. Zudin, S. Korobkov, A. Strikovskiy, “Laboratory study of interaction of magnetoplasma irregularities produced by several radio-frequency heating sources”, Physics of Plasmas, 25:7 (2018)
N. O. Shevchuk, M. Yu. Ortikov, A. I. Pogoreltsev, “Modeling of Atmospheric Tides with Account of Diurnal Variations of Ionospheric Conductivity”, Russ. J. Phys. Chem. B, 12:3 (2018), 576
С. М. Грач, Е. Н. Сергеев, Е. В. Мишин, А. В. Шиндин, “Динамические характеристики плазменной турбулентности ионосферы, инициированной воздействием мощного коротковолнового радиоизлучения”, УФН, 186:11 (2016), 1189–1228; S. M. Grach, E. N. Sergeev, E. V. Mishin, A. V. Shindin, “Dynamic properties of ionospheric plasma turbulence driven by high-power high-frequency radiowaves”, Phys. Usp., 59:11 (2016), 1091–1128
G. I. Grigor'ev, N. V. Bakhmet'eva, A. V. Tolmacheva, E. E. Kalinina, “Relaxation Time of Artificial Periodic Irregularities of the Ionospheric Plasma and Diffusion in the Inhomogeneous Atmosphere”, Radiophys Quantum El, 56:4 (2013), 187
N. V. Bakhmet'eva, V. L. Frolov, V. D. Vyakhirev, E.E. Kalinina, I. A. Bolotin, A. D. Akchurin, E.Yu. Zykov, “Formation of artificial plasma disturbances in the lower ionosphere”, Radiophys Quantum El, 55:1-2 (2012), 95
L D Tsendin, “Analytical approaches to glow discharge problems”, Plasma Sources Sci. Technol., 20:5 (2011), 055011
Ionosphere and Applied Aspects of Radio Communication and Radar, 2008, 139
Ionosphere and Applied Aspects of Radio Communication and Radar, 2008, 253
A. V. Kostrov, V. V. Nazarov, M. V. Starodubtsev, “Laboratory modeling of physical processes in the ionosphere modified by powerful radio emission”, Radiophys Quantum El, 50:8 (2007), 665
Ф. И. Высикайло, М. И. Кузьмин, А. С. Тивков, Б. В. Чекалин, В. А. Чернов, “Физико-математические модели кумуляции электрического поля в структурах газоразрядной плазмы”, Матем. моделирование, 18:11 (2006), 104–116
Y. S. Dimant, M. M. Oppenheim, “Meteor trail diffusion and fields: 2. Analytical theory”, J. Geophys. Res., 111:A12 (2006)
Y. S. Dimant, M. M. Oppenheim, “Meteor trail diffusion and fields: 1. Simulations”, J. Geophys. Res., 111:A12 (2006)
E. N. Myasnikov, “On the Gradient-Current Mechanism of Formation of the Irregular Structure of the High-Latitude Upper Ionosphere”, Radiophys Quantum Electron, 48:7 (2005), 510
Ph. I. Vysikailo, “Electric field cumulation in dissipative structures of gas-discharge plasmas”, J. Exp. Theor. Phys., 98:5 (2004), 936
M. Djebli, R. Annou, T. H. Zerguini, “Nonideal dusty plasma expansion”, Physics of Plasmas, 11:5 (2004), 2267
Transport Phenomena in Partially Ionized Plasma, 2001, 373
Transport Phenomena in Partially Ionized Plasma, 2001, 169