Laser Thomson Scattering Measurements and Modelling on the Electron Behavior in a Magnetic Neutral Loop Discharge Plasma

  • Sung, Youl-Moon (Department of Electrical & Electronic Engineering, Miyazaki University, Japan) ;
  • Kim, Hee-Je (Department of Electrical Engineering, Pusan National University, Changjeon-Dong, Pusan, South Korea) ;
  • Park, Chung-Hoo (Department of Electrical Engineering, Pusan National University, Changjeon-Dong, Pusan, South Korea)
  • Published : 2001.12.01

Abstract

Laser Thomson scattering measurements of electrom temperature and density in a neutral loop discharge (NLD) plasma were performed in order to reveal the electron behavior around the neutral loop (NL). The experimental results were examined by using a simulation model that included effects of a three dimensional electromagnetic field with spatial decay of the RF electric field, and the limitation of the spatial extent of the electron motion and collision effect. From the experiments and modeling of the electron behavior, it was found that NLD plasma posses the electron temeprature $T_{e}$ and density ne peaks around the NL is essential for the formation of plasma. Also, the optimum condition of plasma production could be simply estimated by the calculation of $U_{av}$ and $F_{0}$././.

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