Результаты исследований: Научные публикации в периодических изданиях › статья по материалам конференции › Рецензирование
Numerical model of EOS with large-area plasma cathode with mesh stabilization of the emission plasma boundary. / Astrelin, V.; Vorobyov, M.
в: Journal of Physics: Conference Series, Том 1115, № 2, 022001, 27.11.2018.Результаты исследований: Научные публикации в периодических изданиях › статья по материалам конференции › Рецензирование
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TY - JOUR
T1 - Numerical model of EOS with large-area plasma cathode with mesh stabilization of the emission plasma boundary
AU - Astrelin, V.
AU - Vorobyov, M.
PY - 2018/11/27
Y1 - 2018/11/27
N2 - The source of electrons that generates a beam of a large cross section (BLCS) with the beam release into the atmosphere through a thin metal foil has been developed in the IHCE SB RAS. The electronic BLCS in this case is a superposition of elementary beams formed by separate emission structures. Their plasma boundary is stabilized by a fine-grained metal mesh, covered by a mask with round holes. The configuration of holes repeats the configuration of the holes in the support grid of the outlet foil window having a slightly larger diameter. In preliminary experiments, the maximum current-to-atmosphere output coefficient reached ∼70% of the current in the accelerating gap. The objective of this paper is to select a numerical model of the electron-optical system (EOS) for computer simulation and analysis of the characteristics of the formed elementary beams for further optimization of the source and increase the efficiency of beam extraction into the atmosphere.
AB - The source of electrons that generates a beam of a large cross section (BLCS) with the beam release into the atmosphere through a thin metal foil has been developed in the IHCE SB RAS. The electronic BLCS in this case is a superposition of elementary beams formed by separate emission structures. Their plasma boundary is stabilized by a fine-grained metal mesh, covered by a mask with round holes. The configuration of holes repeats the configuration of the holes in the support grid of the outlet foil window having a slightly larger diameter. In preliminary experiments, the maximum current-to-atmosphere output coefficient reached ∼70% of the current in the accelerating gap. The objective of this paper is to select a numerical model of the electron-optical system (EOS) for computer simulation and analysis of the characteristics of the formed elementary beams for further optimization of the source and increase the efficiency of beam extraction into the atmosphere.
UR - http://www.scopus.com/inward/record.url?scp=85058292563&partnerID=8YFLogxK
U2 - 10.1088/1742-6596/1115/2/022001
DO - 10.1088/1742-6596/1115/2/022001
M3 - Conference article
AN - SCOPUS:85058292563
VL - 1115
JO - Journal of Physics: Conference Series
JF - Journal of Physics: Conference Series
SN - 1742-6588
IS - 2
M1 - 022001
T2 - 6th International Congress on Energy Fluxes and Radiation Effects 2018, EFRE 2018
Y2 - 16 September 2018 through 22 September 2018
ER -
ID: 17896159