SELF-CONSISTENT MONTE-CARLO MODELING OF RF PLASMA IN A HELIUM-LIKE MODEL GAS

被引:45
作者
DATE, A [1 ]
KITAMORI, K [1 ]
SAKAI, Y [1 ]
TAGASHIRA, H [1 ]
机构
[1] HOKKAIDO INST TECHNOL,DEPT IND ENGN,SAPPORO 006,JAPAN
关键词
D O I
10.1088/0022-3727/25/3/016
中图分类号
O59 [应用物理学];
学科分类号
摘要
A self-consistent modelling and simulation technique of RF non-equilibrium plasmas using a Monte Carlo method is presented. Under the condition that the product of the gas pressure and the gap length is small and/or the local electric field changes rapidly, as is commonly the case with RF plasmas, the electron energy distribution shows a non-equilibrium effect against the local electric field. In the present model, the kinetics of electrons and ions is calculated by a Monte Carlo method which enables us to deal fully with the non-equilibrium effect. The electric field in the plasma is self-consistently determined by solving Poisson's equation. With a particle model, the statistical fluctuation tends to be large in the sheath in which the number densities of electrons and ions are low. A scaling technique which enables us to diminish the fluctuation, and therefore the instability, of the simulation is used here. The simulation method is applied to an RF plasma in an He-like model gas and the results suggest that this model can adequately simulate RF plasmas.
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页码:442 / 452
页数:11
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