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Floating potential and sheath thickness for cylindrical and spherical probes in electronegative plasmas

机译:负电等离子体中圆柱形和球形探针的浮动电位和鞘层厚度

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摘要

In this paper, the floating potential, for cylindrical and spherical Langmuir probes immersed into an electronegative plasma, is determined by using a radial model described in a previous paper. This floating potential is determined for several probe radius values and ranks of plasma electronegativity, from almost electropositive plasmas to high electronegative plasmas. The thickness of the positive ion sheath is also determined for this kind of probes in electronegative plasmas, as well as the analytical expressions fitting this thickness, showing its dependence on the probe radius and electric potential.
机译:在本文中,通过使用先前论文中描述的径向模型确定圆柱和球形Langmuir探针浸入负电等离子体中的浮动电位。从几个几乎正电的等离子体到高电负性的等离子体,对于几个探针半径值和等离子体电负性的等级确定该浮动电位。还确定了负电等离子体中此类探针的正离子鞘层的厚度,以及适合该厚度的分析表达式,表明了其与探针半径和电势的关系。

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