Bi-Maxwellian electron energy distributions in the edge of the CAPRICE ECR ion sources

Y. You, F. Meyer, K. Chung
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引用次数: 0

Abstract

Edge plasma of the ORNL CAPRICE ECR ion source is studied by directly measuring, with electrical probes, its local plasma parameters such as plasma density, temperature and electron energy distributions at different RF power levels and different locations from the resonant zone. Edge plasma can be approximated to be bi-Maxwellian, whose characteristics become more pronounced farther from the ECR zone. These trends are consistently explained by the collective long-range Spitzer collision mechanism in terms of steep temperature gradient between the triangular plasma region and the gap region during the bounce motions between the magnetic poles, so that the low energy electrons are more collisional and are pitch-angle scattered to the loss cones, while the high energy electrons are less collisional and can reach farther edge position
CAPRICE ECR离子源边缘的双麦克斯韦电子能量分布
研究了ORNL CAPRICE ECR离子源的边缘等离子体,利用电探针直接测量了其在不同射频功率水平和离共振区不同位置的等离子体密度、温度和电子能量分布等局部等离子体参数。边缘等离子体可以近似为双麦克斯韦,其特征在离ECR区越远越明显。这些趋势与集体远程斯皮策碰撞机制一致,在磁极之间的弹跳运动中,三角形等离子体区和间隙区之间存在陡峭的温度梯度,低能电子碰撞更强,以俯角散射到损失锥上,而高能电子碰撞较小,可以到达更远的边缘位置
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