Образец цитирования:
В. Л. Фролов, Н. В. Бахметьева, В. В. Беликович, Г. Г. Вертоградов, В. Г. Вертоградов, Г. П. Комраков, Д. С. Котик, Н. А. Митяков, С. В. Поляков, В. О. Рапопорт, Е. Н. Сергеев, Е. Д. Терещенко, А. В. Толмачева, В. П. Урядов, Б. З. Худукон, “Модификация ионосферы Земли мощным коротковолновым радиоизлучением”, УФН, 177:3 (2007), 330–340; Phys. Usp., 50:3 (2007), 315–324
Модификация ионосферы Земли мощным коротковолновым радиоизлучением В. Л. Фролов, Н. В. Бахметьева, В. В. Беликович, Г. Г. Вертоградов, В. Г. Вертоградов, Г. П. Комраков, Д. С. Котик, Н. А. Митяков, С. В. Поляков, В. О. Рапопорт, Е. Н. Сергеев, Е. Д. Терещенко, А. В. Толмачева, В. П. Урядов, Б. З. Худукон УФН, 2007, 177:3, 330–340
Эта публикация цитируется в следующих 81 статьяx:
V. L. Frolov, E. S. Andreeva, A. M. Padokhin, “Spatial Structure of Plasma Density Disturbances in the Topside Ionosphere Caused by High-Power HF Heating of the F2 Layer”, Geomagn. Aeron., 64:3 (2024), 329
V. L. Frolov, E. S. Andreeva, A. M. Padokhin, “Spatial Structure of Plasma Density Perturbations Excited at Altitudes of the Upper and Outer Ionosphere During F2-Layer Heating by Powerful HF Radio Waves”, Geomagnetizm i aèronomiâ, 64:3 (2024), 363
Д. С. Моисеева, Е. Л. Ступицкий, “Физические исследования и численное моделирование воздействия мощного потока радиоизлучения на нижнюю ионосферу. Часть 1. Краткий обзор состояния вопроса и постановка задачи”, Компьютерные исследования и моделирование, 15:3 (2023), 619–637
Tatiana Borisova, Nataly Blagoveshchenskaya, Alexey Kalishin, “Features of artificial ionosphere turbulence induced by the O- and X-mode HF heating near the F2-layer critical frequency”, Solnechno-Zemnaya Fizika, 9:1 (2023), 22
Tatiana Borisova, Nataly Blagoveshchenskaya, Alexey Kalishin, “Features of artificial ionosphere turbulence induced by the O- and X-mode HF heating near the F2-layer critical frequency”, Solar-Terrestrial Physics, 9:1 (2023), 21
Nataliya V. Bakhmetieva, Gennadiy I. Grigoriev, Ilia N. Zhemyakov, Elena E. Kalinina, “Artificial Periodic Irregularities and Temperature of the Lower Thermosphere”, Atmosphere, 14:5 (2023), 846
Shindin A.V., Moiseev S.P., Vybornov F.I., Grechneva K.K., Pavlova V.A., Khashev V.R., “The Prototype of a Fast Vertical Ionosonde Based on Modern Software-Defined Radio Devices”, Remote Sens., 14:3 (2022), 547
И. Ю. Зудин, М. Е. Гущин, А. В. Стриковский, С. В. Коробков, И. А. Петрова, А. Н. Катков, В. В. Кочедыков, “Особенности турбулентности, возбуждаемой импульсной высокочастотной накачкой в замагниченной плазме”, Письма в ЖЭТФ, 116:1 (2022), 46–53; I. Yu. Zudin, M. E. Gushchin, A. V. Strikovskiy, S. V. Korobkov, I. A. Petrova, A. N. Katkov, V. V. Kochedykov, “Features of turbulence excited by pulsed high-frequency pump in a magnetoplasma”, JETP Letters, 116:1 (2022), 41–47
Nataliya V. Bakhmetieva, Gennadiy I. Grigoriev, “Study of the Mesosphere and Lower Thermosphere by the Method of Creating Artificial Periodic Irregularities of the Ionospheric Plasma”, Atmosphere, 13:9 (2022), 1346
Daria S. Moiseeva, Evgenii L. Stupitsky, Smart Innovation, Systems and Technologies, 274, Advances in Theory and Practice of Computational Mechanics, 2022, 213
V. L. Frolov, Yu. Yu. Kulikov, A. V. Troitsky, “Artificial Injection of Energy Electrons from the Earth's Radiation Belt: A New Channel for Modifying Ionized and Neutral Atmospheric Components”, Russ. J. Phys. Chem. B, 16:5 (2022), 965
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
Leble S., Vereshchagin S., Bakhmetieva V N., Grigoriev I G., “Study of a Gas Disturbance Mode Content Based on the Measurement of Atmospheric Parameters At the Heights of the Mesosphere and Lower Thermosphere”, Atmosphere, 12:9 (2021), 1123
Shindin A.V., Sergeev E.N., Grach S.M., Milikh G.M., Bernhardt P., Siefring C., McCarrick M.J., Legostaeva Yu.K., “Hf-Induced Modifications of the Electron Density Profile in the Earth'S Ionosphere Using the Pump Frequencies Near the Fourth Electron Gyroharmonic”, Remote Sens., 13:23 (2021), 4895
Li Z., Fang H., Gong H., Guo Zh., “Analysis of Observations Near the Fourth Electron Gyrofrequency Heating Experiment in Eiscat”, Universe, 7:6 (2021), 191
Yasyukevich Yu.V., Syrovatskiy S.V., Padokhin A.M., Frolov V.L., Vesnin A.M., Zatolokin D.A., Kurbatov G.A., Zagretdinov R.V., Pershin A.V., Yasyukevich A.S., “Gps Positioning Accuracy in Different Modes With Active Forcing on the Ionosphere From the Sura High-Power Hf Radiation”, Radiophys. Quantum Electron., 62:12 (2020), 807–819
Leble S., Vereshchagin S., Bakhmetieva V N., Grigoriev I G., “On the Diagnosis of Unidirectional Acoustic Waves as Applied to the Measurement of Atmospheric Parameters By the Api Method in the Sura Experiment”, Atmosphere, 11:9 (2020), 924
Bakhmetieva N.V., Kulikov Yu.Yu., Zhemyakov I.N., “Mesosphere Ozone and the Lower Ionosphere Under Plasma Disturbance By Powerful High-Frequency Radio Emission”, Atmosphere, 11:11 (2020), 1154
Grigoriev G.I., Lapin V.G., Kalinina E.E., “Generation of Internal Gravity Waves in the Thermosphere During Operation of the Sura Facility Under Parametric Resonance Conditions”, Atmosphere, 11:11 (2020), 1169
Frolov V.L., Akchurin A.D., Bolotin I.A., Ryabov A.O., Berthelier J.J., Parrot M., “Precipitation of Energetic Electrons From the Earth'S Radiation Belt Stimulated By High-Power Hf Radio Waves For Modification of the Midlatitude Ionosphere”, Radiophys. Quantum Electron., 62:9 (2020), 571–590