DocumentCode
2204216
Title
Experimental and numerical investigation of a planar type radio frequency inductively coupled oxygen plasma
Author
Chung, Tae Hun ; Seo, D.C. ; Chung, Sung Woo ; Yoon, H.J.
Author_Institution
Dept. of Phys., Dong-A Univ., Pusan, South Korea
fYear
2000
fDate
4-7 June 2000
Firstpage
146
Abstract
Summary form only given, as follows. Experimental and numerical investigations are performed on a radio frequency inductively coupled oxygen plasma. The plasma parameters such as charged species densities, electron temperature, plasma potential, and electron energy distribution function are measured as a function of the gas pressure and the input power by using Langmuir probe diagnostics. Numerical study employs spatially averaged global model and two-dimensional fluid simulation. According to the prevailing particle loss mechanism, the parameter space can be divided into a volume recombination-loss-dominated region and an ion-flux-loss-dominated region. The electronegativity and the shape of density profiles at various operating regions are explored. The scaling laws for the densities of charged species such as positive ion, negative ion, and electron are estimated in terms of plasma parameters for ion-flux-loss-dominated region based on the global balance equations, and then compared with Langmuir probe measurement results. The transition point from ion-flux-loss-dominated region to recombination-loss-dominated region moves to a lower pressure region as the absorbed power increases. In addition, the experimentally obtained radial profiles of plasma parameters are compared with the results of two-dimensional fluid simulation.
Keywords
Langmuir probes; electronegativity; oxygen; plasma density; plasma simulation; plasma temperature; Langmuir probe diagnostics; Langmuir probe measurement; O/sub 2/; charged species densities; charged species density; density profiles; electron; electron energy distribution function; electron temperature; electronegativity; experimental investigation; global balance equations; ion-flux-loss-dominated region; negative ion; numerical investigation; particle loss mechanism; planar type radio frequency inductively coupled O/sub 2/ plasma; plasma parameters; plasma potential; positive ion; recombination-loss-dominated region; scaling laws; spatially averaged global model; two-dimensional fluid simulation; volume recombination-loss-dominated region; Current measurement; Density measurement; Electrons; Plasma density; Plasma diagnostics; Plasma measurements; Plasma simulation; Plasma temperature; Probes; Spontaneous emission;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science, 2000. ICOPS 2000. IEEE Conference Record - Abstracts. The 27th IEEE International Conference on
Conference_Location
New Orleans, LA, USA
ISSN
0730-9244
Print_ISBN
0-7803-5982-8
Type
conf
DOI
10.1109/PLASMA.2000.854818
Filename
854818
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