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XLVII
ZVENIGOROD INTERNATIONAL CONFERENCE
ON PLASMA PHYSICS AND CONTROLLED FUSION
(Zvenigorod, Russia, March, 2020)
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Section
"Physical basis of plasma and beam technologies"
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Zmievskaya G.I.
(Keldysh Institute of Applied Mathematics of the RAS, Moscow, Russia)
Kinetics of phase transitions in condensed matter:
Van der Pol generator model.
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Shavelkina M.B., Ivanov P.P., Amirov R.Kh., Bocharov A.N.
(Joint Institute for High Temperatures of Russian Academy of Sciences, Moscow,
Russia)
Impact of nitrogen on the propane-butane/ helium
plasma composition profile along the jet axis.
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Mursenkova I.V., Kuznetsov A.Yu., Liao Yu., Sazonov A.S., Ulanov P.Yu.
(M.V. Lomonosov Moscow State University, Moscow, Russia)
Dynamics of a nanosecond surface sliding discharge
in supersonic air flows with density gradients.
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1,2,3Kazakov E.D., 1,3Chukbar K.V., 1Demidov B.A.,
1Kalinin Yu.G., 1Krutikov D.I., 1Kurilo A.A.,
1Orlov M.Yu., 1Strizshakov M.G., 1Shashkov A.Yu.,
1,3Tkachenko S.I.
(1National Research Centre "Kurchatov Institute", Moscow, Russia,
2National Research University "Moscow Power Engineering Institute", Moscow,
Russia,
3Moscow Institute of Physics and Technology (State University), Dolgoprudny,
Moscow Reg., Russia)
Application of laser-shadow diagnostics for the study
of shock waves propagation in transparent materials under the high-current electron
beam impact.
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Popov N.A.
(Skobeltsyn Institute of Nuclear Physics, Moscow State University, Moscow,
Russia)
Effect of fast gas heating on the ignition of
H2 / air mixtures by pulsed nanosecond discharge.
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1Shustin E.G., 2Tarakanov V.P.
(1Kotelnikov Institute of Radio Engineering and Electronics of RAS,
Fryazino branch, Moscow reg., Fryazino, Russia,
2Joint Institute for High Temperatures of Russian Academy of Sciences,
Moscow, Russia)
The effect of the ion flow of the plasma reactor on
the micro-conductor on the insulator.
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1Bardakov V.M., 2Kazantsev A.V., 2Nguyen The Thang,
2Strokin N.A., 2Stupin A.N.
(1Irkutsk State Transport University, Irkutsk, Russia,
2Irkutsk National Research Technical University, Irkutsk,
Russia)
Formation of the potential by a plasma flow in
a magnetic barrier.
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1,2Buleyko А.B., 3Ponomarev A.V., 2Loza O.T.,
3Ulyanov D.K.
(1State Scientific Center Troitsk Institute for Innovative and
Thermonuclear Investigations, Municipal district Troitsk, Moscow, Russia,
2Peoples’ Friendship University of Russia, Moscow, Russia,
3A.M. Prokhorov General Physics Institute, Russian Academy of
Sciences, Moscow, Russia)
Experimental plasma maser as a broadband
noise amplifier.
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Diaz Mihailova D.E., Ivanov I.E., Strelkov P.S.
(A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, Moscow,
Russia)
The effect of noise suppression
REB in a plasma relativistic microwave amplifier.
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Ivanov I.
(A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, Moscow,
Russia)
Narrowband generation in a plasma relativistic
microwave emitter.
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1,2Arzhannikov A.V., 1,2Ivanov I.A.,
1,2Kalinin P.V., 1,2Kasatov A.A., 1Makarov M.A.,
1Mekler K.I., 1Rovenskikh A.F., 1Samtsov D.A.,
1Sandalov E.S., 1,2Sinitsky S.L.
(1Budker Institute of Nuclear Physics SB RAS, Novosibirsk, Russia,
2Novosibirsk State University, Novosibirsk, Russia)
Creation of plasma column with various density
gradients to generate THz-radiation in beam-plasma interaction.
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1,2Arzhannikov A.V., 1,2Annenkov V.V., 1,2Ivanov I.A.,
1,2Kalinin P.V., 1,2Kasatov A.A., 1,2Kuznetsov S.A.,
1Kuklin K.N., 1Makarov M.A., 1Mekler K.I.,
1,2Popov S.S.,
1Rovenskikh A.F., 1,2Samtsov D.A., 1,2Sandalov E.S.,
1,2Sinitsky S.L., 1,2Stepanov V.D., 1,2Timofeev I.V.,
1,2Volchok E.P.
(1Budker Institute of Nuclear Physics SB RAS, Novosibirsk, Russia,
2Novosibirsk State University, Novosibirsk, Russia)
Influence of plasma density gradients on the
generation of a terahertz radiation flux in a magnetized plasma column during
relaxation of a kilo-ampere REB (GOL-PET experiments, theoretical consideration).
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Glinov A.P., Golovin A.P., Shaleev K.V.
(Institute of Mechanics, Lomonosov Moscow State University, Moscow, Russia)
Stand for studying processes of initiating long-term
current discharges.
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1Popov M., 2,3Kochetov I., 1Aleksandrov N.
(1Moscow Institute of Physics and Technology (State University), Dolgoprudny,
Moscow Reg., Russia,
2State Scientific Center Troitsk Institute for Innovative and Thermonuclear
Investigations, Municipal district Troitsk, Moscow, Russia,
3P.N. Lebedev Physical Institute of RAS, Moscow, Russia)
Plasma decay in repetitively pulsed high-voltage
nanosecond discharge in hydrogen- and hydrocarbon-containing gaseous mixtures.
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Furov L.V.
(Vladimir State University, Vladimir, Russia)
Thermo-mechanical destruction of the surface of materials
when exposed to plasma formation.
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Ananyev S.S., Cherkez D.I., Bobyr N.P., Spitsyn A.V.
(National Research Centre "Kurchatov Institute", Moscow, Russia)
Conceptual design of fusion reactor materials plasma
irradiation mockup by helicon source.
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Belozerov O.S., Bakshaev Y.L., Ananyev S.S., Khromov S.A., Dan’ko S.A.
(National Research Centre "Kurchatov Institute", Moscow, Russia)
Dependence of efficiency of ions acceleration by
ambipolar field on density of electronic current on the generator REB "KATRAN".
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1Nikulin V.Ya., 2Kolokoltsev V.N., 1Silin P.V.,
2Maslyaev S.A., 2Borovitskaya I.V., 1Peregudova E.N.
(1P.N. Lebedev Physical Institute of RAS, Moscow, Russia,
2A.A. Baikov Institute of Metallurgy and Material Sciences RAS, Moscow,
Russia)
Determination of absorbed energy in metal foils
under the effect of plasma in the plasma focus installation.
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1,2,3Kazakov E.D., 1Demidov B.A., 1Kalinin Yu.G.,
1Krutikov D.I., 1Kurilo A.A., 4Malinin S.A.,
1Orlov M.Yu., 1Strizshakov M.G., 4Sadovnichii D.N.,
1Shashkov A.Yu., 4Sheremetyev K.Yu.
(1National Research Centre "Kurchatov Institute", Moscow, Russia,
2National Research University "Moscow Power Engineering Institute", Moscow,
Russia,
3Moscow Institute of Physics and Technology (State University), Dolgoprudny,
Moscow Reg., Russia,
4The Federal center for dual-use technologies "Soyuz", Dzerzhinsky, Moscow
region, Russia)
Research of multicomponent composites destruction
under powerful pulse of a high-current electron beam.
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Rudyk N., Il’in O., Il’ina M., Fedotov A.
(Southern Federal University, Rostov-on-Don, Russia)
Influence of the frequency of the pulse plasma generator
on the parameters of carbon nanotubes.
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1,2Sorokin I.A., 1,2Kolodko D.V.
(1Kotelnikov Institute of Radio Engineering and Electronics of RAS,
Fryazino branch, Moscow reg., Fryazino, Russia,
2Moscow Research Nuclear University MEPhI, Moscow, Russia)
Deposition of metal-doped diamond-like films using a
hollow cathode discharge.
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Cherkez D.I., Spitsyn A.V.
(National Research Centre "Kurchatov Institute", Moscow, Russia)
PIM facility for the gas and plasma driven hydrogen
permeation studies.
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1Kazeev M.N., 1Kozlov V.F., 1Koidan V.S.,
2Herdrich G., 2Schmidt J.
(1National Research Centre "Kurchatov Institute", Moscow, Russia,
2Universität Stuttgart, Stuttgart, Germany)
Behavior of tungsten evaporation energy under the
heating by a high power pulsed plasma flow.
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1,2Stepanov V.D., 1,2Arzannikov A.V., 1Makarov M.A.,
1Samtsov D.A., 1,2Sinitsky S.L
(1Budker Institute of Nuclear Physics SB RAS, Novosibirsk, Russia,
2Novosibirsk State University, Novosibirsk, Russia)
Angular divergence of electrons ribbon beam
REB in magnetically isolated diode (computer modeling, measurements).
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1Dvinin S.A., 2Khobilov D.U., 2Solikhov D.K.
(1M.V. Lomonosov Moscow State University, Moscow, Russia,
2Tajik National University, Dushanbe, Tajikistan)
On numerical modeling of nonlinear equations of
stimulated Mandelstam-Brilluin scattering in plasma.
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Artem’ev K.V., Batanov G.M., Berezhetskaya N.K., Borzosekov V.D., Davydov A.M.,
Kolik L.V., Konchekov E.M., Kossyi I.A., Moryakov I.V., Petrov A.E., Sarksyan K.A.,
Stepakhin V.D., Kharchev N.K.
(A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, Moscow, Russia)
Structure of a supersonic ionization wave in
atmospheric pressure argon in a microwave beam.
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Ivanov V.A., Konyzhev M.E., Kamolova T.I., Dorofeyuk A.A.
(A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, Moscow,
Russia)
Structure of microplasma discharge on the surface
of titanium.
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1Anpilov A.M., 2Barlow P., 1Barkhudarov E.M.,
1Kossyi I.A., 2Christofi N., 3Miskyan M.A.,
1Moryakov I.V., 2Athi Narayanan S.M., 2Ponard M.,
4Nefedov V.I.
(1A.M. Prokhorov General Physics Institute, Russian Academy
of Sciences, Moscow, Russia,
2Edinburgh Napier University, Edinburgh, United Kingdom,
3National Research University Higher School of Economics, Moscow, Russia,
4Russian Technology University MIREA, Moscow, Russia)
Anti-fouling properties of an amorphous (SP2)
nanocarbon film obtained by high-volume multi-spark discharge in ethanol.
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Batanov G.M., Borzosekov V.D., Konchekov E.M., Letunov A.A., Sarksyan K.A.,
Stepakhin V.D., Kharchev N.K.
(A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, Moscow,
Russia)
Microwave discharge in a powder of a mixture
of dielectrics, initiated by a discharge in nitrogen.
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Omarov O.A., Omarova N.O., Omarova P.H.
(Dagestan State University, Makhachkala, Russia)
Lighting characteristics of high-pressure channel
plasma in a magnetic field.
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