Radio-frequency discharge in a molecular gas flow at a frequency of 1.76 MHz

被引:0
作者
I. Ya. Baranov
A. V. Koptev
机构
[1] Ustinov Baltic State Technical University “VOENMEH”,
来源
Plasma Physics Reports | 2017年 / 43卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Results are presented from experiments on the initiation of a homogeneous stable capacitive RF discharge at a frequency of 1.76 MHz in a high-speed molecular gas flow between metal electrodes at a pressure of 5 Torr or dielectric-coated electrodes at a pressure of up to 50 Torr. A mechanism of the current closure in the electrode sheaths related to the primary photoelectric current generated alternately from different electrodes is proposed. The average electron energy increases via second-kind (superelastic) collisions, and fast electrons with energies corresponding to the amplitude value of the RF voltage appear in the electron energy spectrum. As a result, primary emission arises due to the excitation of emitting states from metastable molecular levels. The primary photoelectric current initiates electron avalanches in the electrode sheaths due to secondary photoelectron emission. According to calculations, the current−voltage characteristic of the sheath in this type of discharge is ascending and the field strengths in the electrode sheath and positive column are lower than those in a self-sustained dc discharge. The calculated results are compared with the experimental data.
引用
收藏
页码:764 / 770
页数:6
相关论文
共 50 条
[31]   Dependence of Parameters of a Radio-Frequency Closed Electron Drift Accelerator on the Radio-Frequency Capacitive Discharge Circuit [J].
Zadiriev, I. I. ;
Shvydkii, G. V. ;
Vavilin, K. V. ;
Kralkina, E. A. ;
Nikonov, A. M. .
HIGH TEMPERATURE, 2023, 61 (01) :1-7
[32]   Dependence of Parameters of a Radio-Frequency Closed Electron Drift Accelerator on the Radio-Frequency Capacitive Discharge Circuit [J].
I. I. Zadiriev ;
G. V. Shvydkii ;
K. V. Vavilin ;
E. A. Kralkina ;
A. M. Nikonov .
High Temperature, 2023, 61 :1-7
[33]   RADIO ECHOES FROM METEOR TRAINS AT A RADIO-FREQUENCY OF 1.98 MHZ [J].
BROWN, N .
JOURNAL OF ATMOSPHERIC AND TERRESTRIAL PHYSICS, 1976, 38 (01) :83-&
[34]   Gas breakdown in radio-frequency field within MHz range:a review of the state of the art [J].
姜巍 ;
吴浩 ;
王之江 ;
易林 ;
张雅 .
Plasma Science and Technology, 2022, 24 (12) :200-211
[35]   Gas breakdown in radio-frequency field within MHz range:a review of the state of the art [J].
姜巍 ;
吴浩 ;
王之江 ;
易林 ;
张雅 .
Plasma Science and Technology, 2022, (12) :200-211
[36]   Gas breakdown in radio-frequency field within MHz range: a review of the state of the art [J].
Jiang, Wei ;
Wu, Hao ;
Wang, Zhijiang ;
Yi, Lin ;
Zhang, Ya .
PLASMA SCIENCE & TECHNOLOGY, 2022, 24 (12)
[37]   Emission characteristics of 6.78-MHz radio-frequency glow discharge plasma in a pulsed mode [J].
Zhang, Xinyue ;
Wagatsuma, Kazuaki .
SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 2017, 133 :72-80
[38]   Radio-frequency capacitive discharge with flowing liquid electrodes at reduced gas pressures [J].
Al. F. Gaisin ;
E. E. Son ;
S. Yu. Petryakov .
Plasma Physics Reports, 2017, 43 :741-748
[39]   Radio-frequency capacitive discharge with flowing liquid electrodes at reduced gas pressures [J].
Gaisin, Al. F. ;
Son, E. E. ;
Petryakov, S. Yu. .
PLASMA PHYSICS REPORTS, 2017, 43 (07) :741-748
[40]   A RADIO-FREQUENCY GAS-DISCHARGE PHENOMENON AND ITS APPLICATION TO MECHANICAL MEASUREMENTS [J].
LION, KS ;
SHEETZ, JW .
PROCEEDINGS OF THE INSTITUTE OF RADIO ENGINEERS, 1949, 37 (02) :174-174