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Plasma expansion towards an electrically insulated surface

机译:等离子体膨胀朝向电绝缘表面

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The problem of plasma expansion into a vacuum is revisited with the addition of a finite boundary condition; an electrically insulated surface. As plasma expands towards a charge-accumulating surface, the leading electron cloud charges the surface negatively, which in turn repels electrons and attracts ions. This plasma-surface interaction is shown to result in a feedback process which accelerates the plasma expansion. In addition, we examine the decrease in (negative) surface potential and associated near-surface electron density. To investigate this plasma coupling with an electrically floating surface, we develop an analytic model including four neighbouring plasma regions: (i) undisturbed plasma, (ii) quasi-neutral self-similar expansion, (iii) ion front boundary layer and (iv) electron cloud. A key innovation in our approach is a self-contained analytic approximation of the ion front boundary layer, providing a spatially continuous electric field model for the early phase of bounded plasma expansion.
机译:通过添加有限的边界条件,重访血浆膨胀成真空的问题;电绝缘表面。随着等离子体朝向电荷累积表面扩张,前导电子云对表面负荷,这反过来返回电子并吸引离子。该等离子体表面相互作用显示出导致反馈过程,其加速了等离子体膨胀。此外,我们检查(负)表面电位的降低和相关的近表面电子密度。为了研究与电浮面的这种等离子体耦合,我们开发了一种分析模型,包括四个相邻的等离子体区域:(i)未受干扰的等离子体,(ii)准中性自相似膨胀,(III)离子前边界层和(IV)电子云。我们方法的关键创新是离子前边界层的自包含的分析近似,为有界等离子体膨胀的早期阶段提供空间连续的电场模型。

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