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Specific Features of the Current-Voltage Characteristics of Diffuse Glow Discharges in Ar:N-2 Mixtures. / Dyatko, N. A.; Ionikh, Yu. Z.; Meshchanov, A. V.; Napartovich, A. P.; Barzilovich, K. A.
в: Plasma Physics Reports, Том 36, № 12, 2010, стр. 1040-1064.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Specific Features of the Current-Voltage Characteristics of Diffuse Glow Discharges in Ar:N-2 Mixtures
AU - Dyatko, N. A.
AU - Ionikh, Yu. Z.
AU - Meshchanov, A. V.
AU - Napartovich, A. P.
AU - Barzilovich, K. A.
PY - 2010
Y1 - 2010
N2 - The characteristics of diffuse glow discharges in pure argon and the Ar + 1%N2 mixture at pressures of 2–80 Torr were studied experimentally and numerically. The discharge operated in a molybdenumglass tube with an inner diameter of 2.8 cm and interelectrode distance of 75 cm. The current-voltage characteristic of the discharge and the populations of the N2(B3Γ g ) and N2(C3Γ u ) states were measured. It is shown that, at relatively low pressures (P < 10 Torr), the current-voltage characteristic of a discharge in the argon-nitrogen mixture lies higher than that in pure argon. In contrast, at higher pressures (P > 15 Torr), the current-voltage characteristic of a discharge in the mixture lies lower than that in pure argon. As the pressure increases, the effect of the reduction in the discharge voltage becomes more pronounced. A self-consistent zero-dimensional kinetic model is developed that allows one to calculate the characteristics of the positive column of a discharge in pure argon and Ar:N2 mixtures under the conditions of high vibrational excitation of nitrogen. A detailed description of the model is presented, and the calculated results are compared with experimental data. The model adequately reproduces the observed change in the current-voltage characteristic in Ar and the Ar + 1%N2 mixture with increasing gas pressure. It is shown that the main ionization mechanism in the Ar + 1%N2 mixture at moderate pressures is the associative ionization of excited nitrogen atoms.
AB - The characteristics of diffuse glow discharges in pure argon and the Ar + 1%N2 mixture at pressures of 2–80 Torr were studied experimentally and numerically. The discharge operated in a molybdenumglass tube with an inner diameter of 2.8 cm and interelectrode distance of 75 cm. The current-voltage characteristic of the discharge and the populations of the N2(B3Γ g ) and N2(C3Γ u ) states were measured. It is shown that, at relatively low pressures (P < 10 Torr), the current-voltage characteristic of a discharge in the argon-nitrogen mixture lies higher than that in pure argon. In contrast, at higher pressures (P > 15 Torr), the current-voltage characteristic of a discharge in the mixture lies lower than that in pure argon. As the pressure increases, the effect of the reduction in the discharge voltage becomes more pronounced. A self-consistent zero-dimensional kinetic model is developed that allows one to calculate the characteristics of the positive column of a discharge in pure argon and Ar:N2 mixtures under the conditions of high vibrational excitation of nitrogen. A detailed description of the model is presented, and the calculated results are compared with experimental data. The model adequately reproduces the observed change in the current-voltage characteristic in Ar and the Ar + 1%N2 mixture with increasing gas pressure. It is shown that the main ionization mechanism in the Ar + 1%N2 mixture at moderate pressures is the associative ionization of excited nitrogen atoms.
UR - https://elibrary.ru/item.asp?id=16979611
U2 - 10.1134/S1063780X10120056
DO - 10.1134/S1063780X10120056
M3 - Article
VL - 36
SP - 1040
EP - 1064
JO - Plasma Physics Reports
JF - Plasma Physics Reports
SN - 1063-780X
IS - 12
ER -
ID: 8144438