Quasi-neutral Particle Simulations Of Magnetized Low Pressure Discharges,

W. Manheimer, M. Lampe, G. Joyce, S. Slinker
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Abstract

Particle simulations of bulk discharges are constrained by the Debye length scale, which is orders of magnitude less than any other scale length of interest in the bulk plasma. While artificial scaling of the parameters, and nonuniform grid spacing can somewhat alleviate the problem, it still represents a serious constraint. Quasi-neutral fluid and hybrid simulations are routinely done; however in many plasmas on the kinetic nature of both the electrons and ions play important roles. The authors report progress on the development of a quasi-neutral particle simulation for an ECR discharge. The quasi-neutral nature of the plasma means that the algorithms for advancing the ions, electrons and for calculating the electric field are very non-standard. The ions are initially advanced in three dimensions. However very fast time scale, short scale length electrostatic electric fields impose average quasi-neutrality perpendicular to the field. The ion motion in the simulation is slightly corrected to reflect this. Along the field line, quasi-neutrality is maintained by very fast electron oscillations. The electron motion is also slightly corrected to insure quasi-neutrality. Once the particles are convected, the electric field is calculated from the electron momentum equation.
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磁化低压放电的准中性粒子模拟
体放电的粒子模拟受到德拜长度尺度的限制,它比体等离子体中任何其他感兴趣的尺度长度都要小几个数量级。虽然人工缩放参数和不均匀网格间距可以在一定程度上缓解问题,但它仍然是一个严重的约束。准中性流体和混合流体模拟是常规的;然而在许多等离子体的动力学性质上,电子和离子都起着重要的作用。作者报告了ECR放电的准中性粒子模拟的发展进展。等离子体的准中性意味着推进离子、电子和计算电场的算法是非常不标准的。离子最初是在三维空间中推进的。然而,非常快的时间尺度,短尺度长度的静电场施加垂直于场的平均准中性。为了反映这一点,模拟中的离子运动进行了轻微的修正。沿场线,准中性是由非常快的电子振荡维持的。为了保证准中性,电子的运动也被稍加修正。一旦粒子发生对流,电场就由电子动量方程计算出来。
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