DocumentCode :
4062
Title :
Dual Discharge Modes Operation of an Argon Plasma Generated by Commercial Electronic Ballast for Remote Plasma Removal Process
Author :
Cho, Tae S. ; Yi-Heng Sen ; Bokka, Ramesh ; Park, Soojin ; Lubomirsky, Dima ; Venkataraman, S.
Author_Institution :
Appl. Mater. Inc., Santa Clara, CA, USA
Volume :
42
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
1636
Lastpage :
1639
Abstract :
An argon plasma generated between the cone-shaped electrode powered by commercial electronic ballast and grounded plane electrode has been investigated. Since the electronic ballast has positive and negative cycle in a period, two different discharge modes of remote plasma-the normal glow discharge mode and the hollow cathode discharge mode-have been observed. It is noted that the hollow cathode discharge mode has wider operation window in gas pressure than the glow discharge one. The glow discharge started to be extinguished at pressure higher than 4.1 torr and turned to the hollow cathode discharge mode in the holes on ground plate, while the hollow cathode discharge mode kept growing until 10 torr. These results show that the stable operation window of the system could be defined by the glow discharge mode rather than the hollow cathode discharge mode and could be improved by optimizing the applied voltage waveform and electrode configuration.
Keywords :
argon; glow discharges; plasma diagnostics; plasma production; Ar; argon plasma; commercial electronic ballast; dual discharge mode operation; electrode configuration; gas pressure; glow discharge mode; ground plate; hollow cathode discharge mode; negative cycle; plasma removal process; positive cycle; stable operation window; Argon; Cathodes; Discharges (electric); Glow discharges; Inductors; Plasmas; Argon plasma; discharge mode; electronic ballast; glow discharge; hollow cathode discharge; remote plasma process; remote plasma process.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2014.2321172
Filename :
6814921
Link To Document :
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