低压和弱纵向磁场下氩中扩展管状等离子体的形成

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, FLUIDS & PLASMAS Plasma Physics Reports Pub Date : 2024-04-16 DOI:10.1134/s1063780x2460004x
Yu. S. Akishev, V. P. Bakhtin, A. B. Buleyko, O. T. Loza, A. V. Petryakov, A. A. Ravaev, E. A. Fefelova
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摘要

摘要 本文介绍了在弱纵向磁场(B = 175 G)中,在不使用热阴极的情况下,加长(l = 300 mm)和薄壁(Δr ≈ 10 mm)管状(2r ≈ 110 mm)等离子体的形成和后续演化的实验研究结果。在形成管状等离子体的圆柱形腔体内,泵入了高纯度氩气(99.998%),平均速度约为 1 米/秒,压力 P = 10-3-10-2 托。使用了两种方法来产生种子电子,启动电离雪崩的发展。这两种方法在击穿动力学和形成管状放电方面存在固有的差异。在第一种方法中,在主放电的高压电源之前进行脉冲放电,在阴极周围的小范围内产生气体预电离。在第二种方法中,通过频率为 85 kHz、持续时间约为 1 秒的射频放电,在放电室的整个工作区域产生了种子电子。通过使用 4 帧 ICCD 摄像机进行高速拍摄,我们可以确定管状放电形成的各个阶段的动态。我们还对纵向和径向放电电流进行了测量。我们获得的结果表明,通过使用微弱的纵向磁场,可以在空间上将扩展的管状等离子体与放电室靠近的金属壁隔离开来。
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Formation of Extended Tubular Plasma in Argon at Low Pressure and in a Weak Longitudinal Magnetic Field

Abstract

The results of experimental studies on the formation and subsequent evolution of extended (l = 300 mm) and thin-walled (Δr ≈ 10 mm) tubular (2r ≈ 110 mm) plasma in a weak longitudinal magnetic field (B = 175 G) without the use of a thermionic cathode are presented. The cylindrical chamber in which the tubular plasma was formed was pumped with high purity argon (99.998%) at an average velocity of about 1 m/s at a pressure of P = 10–3–10–2 Torr. Two methods of creating seed electrons initiating the development of ionization avalanches were used. The difference inherent to these methods has been established in the dynamics of breakdown, completing in the formation of a tubular discharge. In the first of them, a pulsed discharge preceding the high voltage supply of the main discharge created gas preionization in a small area around the sectioned cathodes. In the second method, seed electrons were created in the entire working area of the discharge chamber by an RF discharge with a frequency of 85 kHz and duration of about 1 s. High-speed shooting with a 4-frame ICCD camera allowed us to establish the dynamics of tubular discharge formation at all its stages. Measurements of the longitudinal and radial discharge current were carried out. The results we obtained showed the possibility of spatial isolation of an extended tubular plasma from the close located metal wall of the discharge chamber by using a weak longitudinal magnetic field.

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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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