Title :
PC based numerical simulation of plasma source ion implantation
Abstract :
Summary form only given, as follows. Plasma source ion implantation is a non-line-of-sight method for implanting ions in a material. The target is immersed in a plasma and a large negative voltage pulse is applied; a sheath following the shape of the object forms and accelerates ions into the target. A numerical simulation model has been developed for studying the expansion of the sheath, the current to the target, and the energy spectrum of the ions hitting the target. The model is one-dimensional (planar, cylindrical, or spherical) and treats the ions as a collisionless zero temperature fluid which is accelerated by the electric field. The electrons are assumed to obey the Boltzmann relation instantaneously. The ion fluid motion is solved in Lagrangian coordinates and transformed to a fixed coordinate system for the solution of Poisson´s equation. The resulting computer code runs satisfactorily on PCs. Results for the position of the edge of the expanding sheath and the current waveform have been compared to results from experiments and from a model which considers the sheath to instantaneously satisfy the Child-Langmuir law
Keywords :
digital simulation; ion implantation; plasma applications; plasma production; plasma sheaths; plasma simulation; plasma-wall interactions; Boltzmann relation; Child-Langmuir law; Lagrangian coordinates; PC based numerical simulation; Poisson´s equation; collisionless zero temperature fluid; computer code; current waveform; cylindrical model; edge; electric field; energy spectrum; expanding sheath; expansion; fixed coordinate system; immersed target; ion acceleration; ion fluid motion; negative voltage pulse; nonline-of-sight method; one-dimensional model; planar model; plasma source ion implantation; sheath; spherical model;
Conference_Titel :
Plasma Science, 1990. IEEE Conference Record - Abstracts., 1990 IEEE International Conference on
Conference_Location :
Oakland, CA, USA
DOI :
10.1109/PLASMA.1990.110848