不同电离电位等离子体形成气体中尘埃粒子的选择

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, APPLIED
E. S. Dzlieva, V. Yu. Karasev, L. A. Novikov, S. I. Pavlov, M. S. Golubev, I. Ch. Mashek
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引用次数: 0

摘要

在相同的放电参数下,定量测定了在所有惰性气体中辉光放电的条纹中能够悬浮在尘埃捕集器中的尘埃粒子的大小。从电离势最大的气体(He)转移到 Xe 气体时,颗粒尺寸会减小两倍以上。从粒子悬浮条件的角度解释了实验中发现的依赖性。实验结果表明,在电离势较低的气体中,离子拖曳力超过重力,而力的绝对值随着颗粒大小的减小而减小。所发现的效应可用于等离子捕集器中尘埃粒子的精细捕集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dust Particles Selection in Plasma-Forming Gases with Different Ionization Potentials

Dust Particles Selection in Plasma-Forming Gases with Different Ionization Potentials

The sizes of dust particles capable of levitating in dust traps in striations in a glow discharge in all inert gases are quantitatively determined for the same discharge parameters. A more than twofold decrease in the particle size was established upon passing from the gas with the maximum ionization potential (He) to Xe. The dependence found in the experiment is interpreted from the point of view of the conditions of particle levitation. It is shown that in gases with a low ionization potential in the balance of forces, the ion drag force exceeds the force of gravity, while the absolute values of the forces decrease with decreasing particle size. The discovered effect can be used for fine trapping of dust particles in plasma traps.

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来源期刊
Technical Physics
Technical Physics 物理-物理:应用
CiteScore
1.30
自引率
14.30%
发文量
139
审稿时长
3-6 weeks
期刊介绍: Technical Physics is a journal that contains practical information on all aspects of applied physics, especially instrumentation and measurement techniques. Particular emphasis is put on plasma physics and related fields such as studies of charged particles in electromagnetic fields, synchrotron radiation, electron and ion beams, gas lasers and discharges. Other journal topics are the properties of condensed matter, including semiconductors, superconductors, gases, liquids, and different materials.
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