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The floating potential of spherical probes and dust grains. II: Orbital motion theory

机译:球形探针和灰尘颗粒的浮动电位。二:轨道运动理论

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Probe theory is generally used to find the potential of dust particles immersed in plasma. The orbital motion limited theory (OML) is often used to find the potential at the probe surface, but the assumptions underlying this theory are usually not valid in the case of dust and the more general orbital motion (OM) theory is much harder to calculate. Solutions are given for the OM theory in a range of cases applicable to dust. It is shown that the surface potential the full theory gives reduces to the OML result for small probes. Commonly in dusty plasmas the OML surface potential is used, with the surrounding distribution given by Debye-Huckel, or Yukawa theory. This form, however, neglects ion depletion due to the absorption of particles on type probe surface. In this paper a new analytical solution to the system is given which is applicable to small probes and dust. This new expression is equivalent to Yukawa form, but takes ion absorption into account.
机译:通常使用探针理论来发现浸没在等离子体中的灰尘颗粒的潜力。经常使用轨道运动限制理论(OML)来确定探测器表面的电势,但是该理论所基于的假设通常在尘埃情况下无效,更一般的轨道运动(OM)理论很难计算。在适用于粉尘的各种情况下,给出了OM理论的解决方案。结果表明,整个理论给出的表面电势会降低小探针的OML结果。通常在尘土等离子体中使用OML表面电势,其周围分布由Debye-Huckel或Yukawa理论给出。然而,由于颗粒在探针表面上的吸收,这种形式可以忽略离子的消耗。在本文中,给出了该系统的一种新的分析解决方案,该解决方案适用于小型探针和灰尘。此新表达式与Yukawa形式等效,但考虑了离子吸收。

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