描述弱电离氦等离子体中杂质离子动力学性质的简化方法

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, FLUIDS & PLASMAS
N. L. Alexandrov, A. A. Ponomarev
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引用次数: 0

摘要

采用离子质量与中性粒子质量之比较大的近似方法,计算了O \(_{2}^{ + }\)、N \(_{2}^{ + }\)、O \(_{2}^{ - }\)和O \(_{4}^{ - }\)离子在氦中的迁移率,得到了与蒙特卡罗计算和实验数据在高电场值下的良好一致性。用这种简化的方法确定了O \(_{4}^{ - }\)离子的平均能量和这些离子在氦中的离解速率常数。得到的离子特性与用蒙特卡罗方法更精确的计算结果进行了比较。这两种方法在离子平均能量上得到了很好的一致性,但在解离速率常数上的差异相当显著,达到一个数量级或更多。结果表明,这种差异与离子的能量分布特性有关,离子的质量与中性粒子的质量之比很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Simplified Approach to Describing the Kinetic Properties of Impurity Ions in a Weakly Ionized Helium Plasma

A Simplified Approach to Describing the Kinetic Properties of Impurity Ions in a Weakly Ionized Helium Plasma

Using an approximate approach that is valid for a large ratio of the ion mass to the mass of the neutral particle, the mobility of O\(_{2}^{ + }\), N\(_{2}^{ + }\), O\(_{2}^{ - }\), and O\(_{4}^{ - }\) ions was calculated in helium and good agreement was obtained with the available results of Monte Carlo calculations and experimental data at high values of the reduced electric field. This simplified approach was used to determine the average energy of O\(_{4}^{ - }\) ions and the rate constants of dissociation of these ions in helium. The obtained ion characteristics were compared with the results of more accurate calculations using the Monte Carlo method. Good agreement has been obtained between these two approaches for the average ion energy, but for the dissociation rate constant the difference is quite significant, reaching an order of magnitude or more. It was shown that this difference is associated with the peculiarities of the energy distribution of ions for a large ratio of the ion mass to the mass of the neutral particle.

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来源期刊
Plasma Physics Reports
Plasma Physics Reports 物理-物理:流体与等离子体
CiteScore
1.90
自引率
36.40%
发文量
104
审稿时长
4-8 weeks
期刊介绍: Plasma Physics Reports is a peer reviewed journal devoted to plasma physics. The journal covers the following topics: high-temperature plasma physics related to the problem of controlled nuclear fusion based on magnetic and inertial confinement; physics of cosmic plasma, including magnetosphere plasma, sun and stellar plasma, etc.; gas discharge plasma and plasma generated by laser and particle beams. The journal also publishes papers on such related topics as plasma electronics, generation of radiation in plasma, and plasma diagnostics. As well as other original communications, the journal publishes topical reviews and conference proceedings.
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