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Sheath and presheath in a collisionless plasma containing negative ions with an open magnetic field

机译:在含有带开放磁场的碰撞等离子体中的护套和抗柱状

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The effects of an axisymmetric magnetic mirror field with diverging field lines on the plasma presheath and sheath are numerically investigated by solving the plasma-sheath equation for a collisionless plasma in the presence of negative ions. The positive and negative ions with a finite temperature are generated throughout the volume where the sources vary according to the ionization rate. Electrons are assumed to obey the Boltzmann relation. The sheath formation and Debye shielding, which depends considerably on the magnetic strength profile, decrease remarkably on applying an expanding magnetic field. The dependence of the particle densities and the electrostatic potential on the magnetic field profiles are explicitly investigated in this study. Negative ions with sufficient energy penetrate into the sheath following the field lines and eventually reflect back at a point where the mirror force and the electrostatic force balance each other.
机译:通过求解负离子存在下无碰撞等离子体的等离子体鞘层方程,数值研究了具有发散场线的轴对称磁镜场对等离子体鞘层和鞘层的影响。温度有限的正离子和负离子在整个体积内产生,源随电离率的变化而变化。假设电子服从玻尔兹曼关系。鞘层的形成和德拜屏蔽在很大程度上取决于磁场强度分布,在施加扩展磁场时会显著降低。本研究明确研究了粒子密度和静电势对磁场分布的依赖性。具有足够能量的负离子沿着场线渗入鞘层,最终在镜像力和静电力相互平衡的点反射回来。

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