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One-dimensional particle-in-cell simulation of a current-free double layer in an expanding plasma

机译:膨胀等离子体中无电流双层的一维单元内粒子模拟

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A one-dimensional particle-in-cell code using Monte Carlo collision techniques (MCC/PIC) for both ions and electrons is used to simulate our earlier experimental results which showed that a current-free electric double layer (DL) can form in a plasma expanding along a diverging magnetic field. These results differ from previous experimental or simulation systems where the double layers are driven by a current or by imposed potential differences. Both experiment and simulation show accelerated ions with energies up to about 60 eV on the low potential side of the plasma. A new numerical method is added to the conventional PIC scheme to simulate inductive electron heating, as distinct from the more common capacitively driven simulations. A loss process is introduced along the axis of the simulation to mimic the density decrease along the axis of an expanding plasma in a diverging magnetic field. The results from the MCC/PIC presented here suggest that the expansion rate compared to the ionization frequency is a critical parameter for the existence of the DL. For the DL to be absolutely current free, the source wall has to be allowed to charge: having both ends of the simulation at the same potential always resulted in a current flow. Also, the effect of the neutral pressure and of the size of the diffusion chamber are investigated. Finally we show that this particular type of DL has electrons in Boltzmann equilibrium and that it creates a supersonic ion beam. (c) 2005 American Institute of Physics.
机译:使用针对离子和电子的蒙特卡洛碰撞技术(MCC / PIC)的一维单元内粒子代码可模拟我们之前的实验结果,该结果表明无电流双电层(DL)可以形成等离子体沿发散磁场扩展。这些结果与以前的实验或仿真系统不同,后者的双层是由电流或施加的电势差驱动的。实验和模拟均显示在等离子体的低电势侧能量高达约60 eV的加速离子。与更常见的电容驱动模拟不同,传统的PIC方案中增加了一种新的数值方法来模拟感应电子加热。沿模拟轴引入了损耗过程,以模拟在扩散磁场中沿膨胀等离子体轴的密度降低。来自此处的MCC / PIC的结果表明,与电离频率相比,膨胀率是DL存在的关键参数。为了使DL完全无电流,必须允许源极壁充电:模拟的两端处于相同的电势始终会导致电流流动。同样,研究了中性压力和扩散室尺寸的影响。最后,我们证明了这种特殊类型的DL在玻尔兹曼平衡中具有电子,并且产生了超音速离子束。 (c)2005年美国物理研究所。

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