Образец цитирования:
И. А. Аброян, М. А. Еремеев, Н. Н. Петров, “Возбуждение электронов в твердых телах сравнительно медленными атомными частицами”, УФН, 92:1 (1967), 105–157; Phys. Usp., 10:3 (1967), 332–367
K. Krieger, S. Brezinsek, J.W. Coenen, H. Frerichs, A. Kallenbach, A.W. Leonard, T. Loarer, S. Ratynskaia, N. Vianello, N. Asakura, M. Bernert, D. Carralero, R. Ding, D. Douai, T. Eich, Y. Gasparyan, A. Hakola, Y. Hatano, M. Jakubowski, M. Kobayashi, S. Krasheninnikov, S. Masuzaki, T. Nakano, R. Neu, R.A. Pitts, J. Rapp, K. Schmid, O. Schmitz, D. Tskhakaya, L. Wang, T. Wauters, S. Wiesen, “Scrape-off layer and divertor physics: Chapter 5 of the special issue: on the path to tokamak burning plasma operation”, Nucl. Fusion, 65:4 (2025), 043001
Milica PETROVIĆ, Dragan RADIVOJEVIĆ, Saša RANČEV, Nena VELINOV, Miloš KOSTIĆ, Danijela BOJIĆ, Aleksandar BOJIĆ, “Non-thermal atmospheric-pressure positive pulsating corona discharge in degradation of textile dye Reactive Blue 19 enhanced by Bi2O3 catalyst”, Plasma Sci. Technol., 26:2 (2024), 025504
Milica Petrović, Miloš Kostić, Saša Rančev, Dragan Radivojević, Miljana Radović Vučić, Andrew Hurt, Aleksandar Bojić, “Co-doped ZnO catalyst for non-thermal atmospheric pressure pulsating corona plasma degradation of reactive dye”, Materials Chemistry and Physics, 325 (2024), 129733
Hatice Hilal Yücel, Selçuk Utaş, Erhan Ongun, “The Study of DC- and AC-Driven GaAs-Coupled Gas Discharge Micro Plasma Systems: Modeling and Simulation”, J. Electron. Mater., 53:7 (2024), 3792
Milica Petrović, Tijana Jovanović, Saša Rančev, Janez Kovač, Nena Velinov, Slobodan Najdanović, Miloš Kostić, Aleksandar Bojić, “Plasma modified electrosynthesized cerium oxide catalyst for plasma and photocatalytic degradation of RB 19 dye”, Journal of Environmental Chemical Engineering, 10:3 (2022), 107931
Milica Petrović, Tijana Jovanović, Saša Rančev, Janez Kovač, Nena Velinov, Slobodan Najdanović, Miloš Kostić, Aleksandar Bojić, “Plasma Modified Electrosynthesized Cerium Oxide Catalyst for Plasma and Photodegradation of Organic Compound, Role of the Catalyst”, SSRN Journal, 2022
Milica Petrović, Saša Rančev, Marija Prekajski Ðorđević, Slobodan Najdanović, Nena Velinov, Miljana Radović Vučić, Aleksandar Bojić, “Electrochemically synthesized Molybdenum oxides for enhancement of atmospheric pressure non-thermal pulsating corona plasma induced degradation of an organic compound”, Chemical Engineering Science, 230 (2021), 116209
Milica Petrović, Saša Rančev, Nena Velinov, Miljana Radović Vučić, Milan Antonijević, Goran Nikolić, Aleksandar Bojić, “Triclinic ZnMoO4 catalyst for atmospheric pressure non-thermal pulsating corona plasma degradation of reactive dye; role of the catalyst in plasma degradation process”, Separation and Purification Technology, 269 (2021), 118748
J T Gudmundsson, “Physics and technology of magnetron sputtering discharges”, Plasma Sources Sci. Technol., 29:11 (2020), 113001
J Golda, J Held, V Schulz-von der Gathen, “Comparison of electron heating and energy loss mechanisms in an RF plasma jet operated in argon and helium”, Plasma Sources Sci. Technol., 29:2 (2020), 025014
Jon Tomas Gudmundsson, Daniel Lundin, High Power Impulse Magnetron Sputtering, 2020, 1
К. Ф. Миннебаев, Э. И. Рау, А. А. Татаринцев, “Зарядка диэлектриков при бомбардировке ионами Ar$^{+}$ средних энергий”, Физика твердого тела, 61:6 (2019), 1090–1093; K. F. Minnebaev, E. I. Rau, A. A. Tatarintsev, “Charging of dielectrics under medium energy Ar$^{+}$ ions irradiation”, Phys. Solid State, 61:6 (2019), 1013–1016
L. Vignitchouk, S. Ratynskaia, P. Tolias, R.A. Pitts, G. De Temmerman, M. Lehnen, D. Kiramov, “Survival and in-vessel redistribution of beryllium droplets after ITER disruptions”, Nucl. Fusion, 58:7 (2018), 076008
Markus Brandstätter, Nadia Gambino, Reza S. Abhari, “Temporally and spatially resolved ion dynamics of droplet-based laser-produced tin plasmas in lateral expansion direction”, Journal of Applied Physics, 123:4 (2018)
Jon Tomas Gudmundsson, Ante Hecimovic, “Foundations of DC plasma sources”, Plasma Sources Sci. Technol., 26:12 (2017), 123001
S I Kuznetsov, G N Dudkin, B A Nechaev, I D Bystritsky, “Methods of studying the composition of the low-energy ion beams and the surface of deuterated-metal targets”, IOP Conf. Ser.: Mater. Sci. Eng., 135 (2016), 012023
В. Е. Захаров, В. И. Карась, “Неравновесные колмогоровского типа распределения частиц и их приложения”, УФН, 183:1 (2013), 55–85; V. E. Zakharov, V. I. Karas', “Nonequilibrium Kolmogorov-type particle distributions and their applications”, Phys. Usp., 56:1 (2013), 49–78
Vladimir E. Zakharov, Vyacheslav I. Karas', “Nonequilibrium Kolmogorov-type particle distributions and their applications”, Успехи физических наук, 183:1 (2013), 55
D. V. Kulikov, Yu. V. Trushin, V. S. Kharlamov, “Effect of the nitrogen ion energy on the MBE growth of thin gallium nitride films”, Tech. Phys. Lett., 36:3 (2010), 262
A. I. Bazhin, D. V. Grankin, V. V. Styrov, V. I. Tyutyunnikov, “Ionoluminescence in the presence of ionizing radiation”, Bull. Russ. Acad. Sci. Phys., 72:7 (2008), 915