DocumentCode
1315461
Title
Light Emission From CsI-Coated Carbon Velvet Cathodes Under Varied Conditions
Author
Lynn, Curtis F. ; Neuber, Andreas A. ; Walter, John W. ; Dickens, James C. ; Kristiansen, Magne
Author_Institution
Center for Pulsed Power & Power Electron., Texas Tech Univ., Lubbock, TX, USA
Volume
40
Issue
12
fYear
2012
Firstpage
3449
Lastpage
3454
Abstract
Many high-power electron devices utilize cold-cathode diodes to generate intense electron beams. These cold cathodes have the advantage of being capable of supplying several kiloamperes of current spread over a large cross section without the need for auxiliary components such as a heater supply. However, they suffer from many known problems such as nonuniform emission that can result in small areas of high current density on the anode and, thus, excessive anode heating. As a consequence, outgassing and vaporization of bulk material frequently leads to premature impedance collapse. Hence, minimizing nonuniform anode heating due to beam nonuniformity is paramount. As previously demonstrated, the use of a CsI-coated carbon velvet cathode improved beam uniformity, reduced outgassing, and mitigated early impedance collapse. To quantify the uniformity, temporal and spatially resolved images of the cathode plasma were taken for a CsI-coated carbon fiber cathode, operated at an average current density of ~150 A/cm2 under various conditions, i.e., without a field shaping ring, before and after discharge cleaning, and with a field shaping ring. All cathodes were operated in a sealed tube with a small integrated sputter ion pump to restore vacuum levels to 10-9 torr levels between subsequent shots.
Keywords
anodes; caesium compounds; cathodes; electron beams; light emitting devices; CsI; CsI-coated carbon fiber cathode; CsI-coated carbon velvet cathode; beam nonuniformity; cold-cathode diodes; excessive anode heating; high-power electron devices; light emission; Anodes; Cathodes; Current density; Discharges (electric); Electron beams; Plasmas; Cold-cathode tubes; electron beams; microwave tube;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2012.2218624
Filename
6329448
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