Образец цитирования:
Ю. И. Бычков, Ю. Д. Королев, Г. А. Месяц, “Импульсный разряд в газе в условиях интенсивной ионизации электронами”, УФН, 126:3 (1978), 451–477; Phys. Usp., 21:11 (1978), 944–958
Lisenkov V.V., Mamontov I Yu., “Numerical Study of the Dynamics of An Electron Avalanche in the Forming Cathode Sheath of a Self-Sustained Volume Discharge”, Plasma Phys. Rep., 47:4 (2021), 396–402
Hongda Li, Y. N. Panchenko, M. V. Andreev, A. V. Puchikin, S. A. Yampolskaya, V. F. Losev, S. S. Anufrick, “Influence of Discharge Plasma Inhomogeneities on the Characteristics of KrF-Laser Radiation”, Russ Phys J, 63:12 (2021), 2070
Mikhail M Tsventoukh, “On the consistency between ionization and trapped runaway electron acceleration in a pulsed discharge”, Plasma Sources Sci. Technol., 30:8 (2021), 087001
Y. D. Korolev, N. V. Landl, O. B. Frants, G. A. Argunov, V. G. Geyman, A. V. Bolotov, V. O. Nekhoroshev, V. S. Kasyanov, “Low-pressure discharge with hollow cathode and hollow anode in a trigger unit of pseudospark switch”, Physics of Plasmas, 28:7 (2021)
Grigoriy A. Argunov, Nikolay V. Landl, Oleg B. Frants, Yury D. Korolev, Vladimir G. Geyman, Alexander V. Bolotov, 2020 7th International Congress on Energy Fluxes and Radiation Effects (EFRE), 2020, 342
Nikolay V. Landl, Vladimir S. Kasyanov, Vladimir G. Geyman, Oleg B. Frants, Yury D. Korolev, Alexandr V. Bolotov, Grigoriy A. Argunov, 2020 7th International Congress on Energy Fluxes and Radiation Effects (EFRE), 2020, 305
Grigoriy A. Argunov, Nikolay V. Landl, Yury D. Korolev, Oleg B. Frants, Vladimir G. Geyman, Vitaly O. Nekhoroshev, 2020 7th International Congress on Energy Fluxes and Radiation Effects (EFRE), 2020, 131
Г. А. Месяц, М. И. Яландин, “Наносекундный объёмный разряд в воздухе, инициируемый пикосекундным пучком убегающих электронов”, УФН, 189:7 (2019), 747–751; G. A. Mesyats, M. I. Yalandin, “Nanosecond volume discharge in air initiated by a picosecond runaway electron beam”, Phys. Usp., 62:7 (2019), 699–703
Yu. I. Bychkov, S. A. Yampolskaya, A. G. Yastremskii, “Two-dimensional simulation of the development of an inhomogeneous volume discharge in a Ne/Xe/HCl gas mixture”, Plasma Phys. Rep., 39:5 (2013), 374
Peter S. Rostler, Diarmaid H. Douglas-Hamilton, “Streamer Growth in an E-Beam Sustained Discharge”, IEEE Trans. Plasma Sci., 36:4 (2008), 938
Y Sadiq, M Özer, B G Salamov, “Stability and current behaviour in semiconductor gas discharge electronic devices”, J. Phys. D: Appl. Phys., 41:4 (2008), 045204
G A Mesyats, “Ectons and their role in plasma processes”, Plasma Phys. Control. Fusion, 47:5A (2005), A109
Pulsed Power, 2004, 55
В. В. Осипов, УФН, 170:3 (2000), 225–245; Phys. Usp., 43:3 (2000), 221–241
Yu. I. Bychkov, B. M. Kovalchuk, G. P. Kuzmin, G. A. Mesyats, V. F. Tarasenko, “Wide-aperture CO2 lasers pumped with an electron-beam-controlled discharge”, Russ Phys J, 43:5 (2000), 345
A. S. Biryukov, I. I. Klimovskii, A. A. Stepanov, V. A. Shcheglov, “Theoretical feasibility study of new high-efficiency continuous-wave lasers operating at electron transitions in the spectral regions from near ir to uv on the basis of unconventional mechanisms of forming the active gaseous media”, J Russ Laser Res, 21:2 (2000), 101
E.E. Kunhardt, “Generation of large-volume, atmospheric-pressure, nonequilibrium plasmas”, IEEE Trans. Plasma Sci., 28:1 (2000), 189
B G Salamov, M Özer, M Kasap, S Altindal, “The concentration of currents on the artificial surface inhomogeneities of semiconducting cathodes in ionization cells”, J. Phys. D: Appl. Phys., 32:6 (1999), 682
Maxim Makarov, Yuri Bychkov, “The dynamics of XeCl discharge contraction”, J. Phys. D: Appl. Phys., 29:2 (1996), 350
M Makarov, “Effect of electrode processes on the spatial uniformity of the XeCl laser discharge”, J. Phys. D: Appl. Phys., 28:6 (1995), 1083