Zobrazeno 1 - 10
of 43
pro vyhledávání: '"V. Yu. Kozhevnikov"'
Autor:
A. V. Kozyrev, A. O. Kokovin, V. Yu. Kozhevnikov, V. F. Tarasenko, E. Kh. Baksht, N. P. Vinogradov
Publikováno v:
Journal of Experimental and Theoretical Physics. 136:250-257
Autor:
V. F. Tarasenko, E. Kh. Baksht, N. P. Vinogradov, A. V. Kozyrev, A. S. Kokovin, V. Yu. Kozhevnikov
Publikováno v:
JETP Letters. 115:667-672
Autor:
V. Yu. Kozhevnikov, A. V. Kozyrev
Publikováno v:
Russian Physics Journal. 64:2341-2349
Publikováno v:
Russian Physics Journal.
Autor:
Victor F. Tarasenko, Victor A. Panarin, V. S. Skakun, N. Yu. Babaeva, E. A. Sosnin, George V. Naidis, A. V. Kozyrev, V. Yu. Kozhevnikov
Publikováno v:
Physics-Uspekhi. 64:191-210
We describe the recently discovered phenomenon of the formation of an extended luminous structure at the bend of the channel of a high-voltage pulse discharge. It is called the apokamp (from the Greek words απó — ‘from’ and κάμπη —
Autor:
Chengxun Yuan, Jingfeng Yao, A.A. Kudryavtsev, V. S. Igumnov, S. N. Artemenko, V. Yu. Kozhevnikov, A. V. Kozyrev
Publikováno v:
2021 13th International Symposium on Antennas, Propagation and EM Theory (ISAPE).
Autor:
Aleksandr Kokovin, V. S. Skakun, V. S. Kuznetsov, Victor F. Tarasenko, V. Yu. Kozhevnikov, Andrey V. Kozyrev, A. G. Sitnikov, Victor A. Panarin, E. A. Sosnin
Publikováno v:
Russian Physics Journal. 62:1289-1297
The experimental and theoretical investigations of a new form of burning of a repetitively-pulsed discharge – apokamp – are performed. It is shown that an apokampic discharge represents a narrow streamer channel, growing from the point of plasma
Autor:
V. Yu. Kozhevnikov, Alexey Klimov
Publikováno v:
Russian Physics Journal. 60:1319-1324
Frequency-domain numerical modeling is performed and disc-shaped wide-aperture absorbing loads of calorimeters with a working liquid based on ethyl alcohol, which are designed to measure the energy of highpower microwave pulses, are optimized using t
Publikováno v:
Russian Physics Journal. 60:1425-1436
Results of theoretical modeling of the phenomenon of a high-voltage discharge in nitrogen at atmospheric pressure are presented, based on a consistent kinetic theory of the electrons. A mathematical model of a nonstationary high-pressure discharge ha
Publikováno v:
Technical Physics Letters. 43:804-807
Within the theoretical model of a high-pressure hybrid nanosecond discharge with runaway electrons, a strong dependence of the electron beam amplitude, duration, and energy spectrum on the conditions of the preliminary ionization of a gas in the disc