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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Numerical experiments on charging of a spherical body in a plasma with Maxwellian distributions of charged particles
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Numerical experiments on charging of a spherical body in a plasma with Maxwellian distributions of charged particles

机译:带电荷粒子的麦克风分布的等离子体中球体充电的数值实验

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摘要

New results of numerical simulation of collisionless plasma perturbation caused by a sphere absorbing electrons and ions are presented. Consideration is given to nonstationary phenomena accompanying the process of charging as well as to plasma steady state reached at long times. Corresponding asymptotic values of charges of the sphere and trapped-ion cloud around it have been found along with self-consistent electric field pattern depending on parameters of the unperturbed plasma. It is established that contribution of the trapped ions to screening of the charged sphere can be quite significant, so that the screening becomes essentially nonlinear in nature. A simple interconnection between the sphere radius, electron and ion Debye lengths has been revealed as the condition for maximum trapped-ion effect. Kinetic structure of the space charge induced in the plasma is discussed with relation to the specific form of the unperturbed charged particle distribution functions.
机译:提出了由球体吸收电子和离子引起的碰撞等离子体扰动数值模拟的新结果。 伴随着充电过程以及长时间达到的等离子体稳态的非持久性现象。 根据未受察带的等离子体的参数,已经发现与周围的球体和捕获离子云的相应渐近值以及周围的截留离子云的渐近值。 建立捕获的离子对带电球的贡献可能是非常显着的,因此筛选在自然界基本上变得非线性。 球形半径,电子和离子长度之间的简单互连被揭示为最大捕获离子效应的条件。 讨论了等离子体中诱导的空间电荷的动力学结构与未受所带来的带电粒子分布函数的特定形式讨论。

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