DocumentCode :
1058673
Title :
Two-region computational model for DC glow discharge plasma
Author :
Pirooz, Saeed ; Ramachandran, Palghat A. ; Abraham-Shrauner, Barbara
Author_Institution :
MEMC Electron. Mater. Inc., St. Peters, MO, USA
Volume :
19
Issue :
2
fYear :
1991
fDate :
4/1/1991 12:00:00 AM
Firstpage :
408
Lastpage :
418
Abstract :
A two-region model has been developed which simplifies the computations for a DC glow discharge plasma between two parallel plates. The glow discharge is divided into a cathode sheath and a bulk plasma. An anode sheath is ignored in the computations. The bulk plasma is assumed to be quasi-neutral and supports ambipolar diffusion. To link the sheath and bulk regions, the classical ambipolar analysis is modified to include a net total current in the plasma. In the sheath region the plasma variables are determined by numerical integration of an initial-value problem by Gear´s routine. The integration starts from the cathode with the total current fixed and with the cathode electric field iterated until a complete solution is found. The sheath-bulk boundary occurs at the distance from the cathode where the electron and ion densities are nearly equal; matching conditions on the plasma variables are imposed here. Illustrative results are presented for some chosen conditions, and the effect of operating variables on the pertinent plasma properties is qualitatively discussed
Keywords :
glow discharges; DC glow discharge plasma; Gear´s routine; ambipolar diffusion; bulk plasma; cathode electric field; cathode sheath; initial-value problem; integration; parallel plates; sheath-bulk boundary; two-region computational model; Cathodes; Chemical engineering; Computational modeling; Glow discharges; Plasma applications; Plasma chemistry; Plasma materials processing; Plasma properties; Plasma sheaths; Sputter etching;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.106839
Filename :
106839
Link To Document :
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