1995
DOI: 10.1109/27.376585
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Light emission during cathode sheath formation in preionized high-pressure glow discharges

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Cited by 30 publications
(15 citation statements)
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“…Metal vapor serves as "additives" with low ionization potential, which helps to multiply electrons in this zone to higher densities comparing with the bulk discharge. Similar behavior was observed in discharges for the pumping of rare-gas-halide exciplex lasers [15][16][17][18].…”
Section: Discharge Homogeneity and Spatial-resolved Uv-vis Spectrasupporting
confidence: 67%
“…Metal vapor serves as "additives" with low ionization potential, which helps to multiply electrons in this zone to higher densities comparing with the bulk discharge. Similar behavior was observed in discharges for the pumping of rare-gas-halide exciplex lasers [15][16][17][18].…”
Section: Discharge Homogeneity and Spatial-resolved Uv-vis Spectrasupporting
confidence: 67%
“…After the ionization wave returns to the cathode (when the cathode sheath begins to form), marginal spatial nonuniformity appears at the periphery of the cathode surfaces near the side walls (see Figs As it was shown earlier (see e.g. [9][10][11][12]), the development of discharge is very sensitive to any initial inhomogeneity on and near to the cathode surface which can lead to constriction (or filamentation) during further discharge evolution. The inhomogeneity can be created artificially on the cathode surface as it was done in [10].…”
Section: D Characteristicsmentioning
confidence: 88%
“…При исследовании пространственной структуры разряда [6][7][8][9][11][12][13][14][15] в объемных разрядах наблюдались макро-и микроканалы, которые слабо влияли на рост разрядно-го тока и спада напряжения на промежутке. По данным экспериментальных исследова-ний [16], однородность разряда улучшалась как при увеличении начальной концентра- ции электронов n 0 , так и при увеличении скорости роста n е на начальной стадии разря-да.…”
Section: Introductionunclassified