DocumentCode :
1143039
Title :
Comparative studies on intense electron beams generated in transient hollow-cathode discharges
Author :
Dewald, Eduard ; Frank, Klaus ; Hoffmann, Dieter H H ; Tauschwitz, Andreas
Author_Institution :
GSI, Darmstadt, Germany
Volume :
30
Issue :
5
fYear :
2002
fDate :
10/1/2002 12:00:00 AM
Firstpage :
1820
Lastpage :
1826
Abstract :
For a large range of pulsed power applications, intense pulsed electron beams with 0.1-2-mm diameter, power densities of about 109 W/cm2, peak currents in the 50 to 1000 A range, and electron energies up to several tens of kiloelectronvolts are generated in high voltage (5-30 kV) transient hollow cathode discharges (THCD). The most efficient THCD configurations for generating such electron beams are the pseudospark, the channel spark, and preionization-controlled open-ended hollow-cathode configurations, which differ from each other by the tube geometry and the typical working gas pressure (0.5-500 Pa). The beam parameters, such as current, pulse length, and electron energy are compared for all three configurations using the same diagnostics. The dependencies of these beam parameters on the discharge geometry, voltage, external capacitance, and gas pressure is discussed in these three configurations.
Keywords :
electron beams; glow discharges; sparks; 0.5 to 500 Pa; 5 to 30 kV; 50 to 1000 A; channel spark; current pulse length; diagnostics; discharge geometry; electron beams; electron energy; external capacitance; intense electron beams; intense pulsed electron beams; preionization-controlled open-ended hollow-cathode configurations; pseudospark; pulsed power applications; transient hollow cathode discharges; transient hollow-cathode discharges; tube geometry; Current measurement; Electrical resistance measurement; Electron beams; Electrostatics; Geometry; Plasma measurements; Power generation; Pulse generation; Sparks; Voltage;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2002.806622
Filename :
1178213
Link To Document :
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