Conditions for the formation and parameters of anodic plasma in a low-pressure arc discharge

被引:0
|
作者
Acad of Sciences of the USSR, Russia [1 ]
机构
来源
High Temp | 1988年 / 5卷 / 632-638期
关键词
Electric Discharges - Mathematical Models - Gases - Ionization - Mathematical Techniques - Numerical Methods - Plasma Devices;
D O I
暂无
中图分类号
学科分类号
摘要
The formation of plasma in the anodic region of a low-pressure arc discharge is analyzed and its parameters are determined based on experimental and numerical modeling. It is shown that at pressures of 0.01-0.1 Pa plasma electrons make the greatest contribution to the ionization process. These electrons are formed as a result of the relaxation of the flux of high-energy electrons accompanying the development of collective interaction processes in the region under study; this is the basic reason for the sharp growth in the electron density as the gas pressure increases and the previously not observed nonmonotonic nature of the pressure dependence of the plasma potential. Analogous dependences are also observed when the geometric dimensions of the electrode system are changed. The results of the calculation agree satisfactorily with experiment.
引用
收藏
相关论文
共 50 条
  • [31] Plasma-chemical synthesis of copper oxide nanoparticles in a low-pressure arc discharge
    Uschakov, A. V.
    Karpov, I. V.
    Lepeshev, A. A.
    Petrov, M. I.
    VACUUM, 2016, 133 : 25 - 30
  • [32] Magnetic State of the Nickel Oxide Nanoparticles Formed in Low-Pressure Arc Discharge Plasma
    Ushakov, A.V.
    Karpov, I.V.
    Fedorov, L. Yu.
    Demin, V.G.
    Goncharova, E.A.
    Shaikhadinov, A.A.
    Russian Metallurgy (Metally), 2021, 2021 (13) : 1656 - 1660
  • [33] Features of Interaction of Molecular Oxygen with Condensation Surface in Low-Pressure Arc Discharge Plasma
    Karpov, I., V
    Ushakov, A., V
    Fedorov, L. Yu
    Goncharova, E. A.
    Brungardt, M., V
    Demin, V. G.
    INORGANIC MATERIALS-APPLIED RESEARCH, 2022, 13 (04) : 945 - 951
  • [34] Magnetic State of the Nickel Oxide Nanoparticles Formed in Low-Pressure Arc Discharge Plasma
    A. V. Ushakov
    I. V. Karpov
    L. Yu. Fedorov
    V. G. Demin
    E. A. Goncharova
    A. A. Shaikhadinov
    Russian Metallurgy (Metally), 2021, 2021 : 1656 - 1660
  • [35] TRANSITION OF A PINCHED LOW-PRESSURE ARC DISCHARGE TO A CASCADE ARC.
    Gavrilov, N.V.
    Kreindel, Yu.E.
    Oks, E.M.
    Shchanin, P.M.
    Soviet physics. Technical physics, 1983, 28 (10): : 1198 - 1200
  • [36] Numerical simulation and analysis of lithium plasma during low-pressure DC arc discharge
    Wu, Runhui
    Chai, Song
    Liu, Jiaqi
    Cong, Shiyuan
    Meng, Gang
    PLASMA SCIENCE & TECHNOLOGY, 2019, 21 (04)
  • [37] Enhancement of emission currents in plasma electron sources based on a low-pressure arc discharge
    V Koval, T.
    Devyatkov, V. N.
    Nguyen Bao Hung
    12TH INTERNATIONAL CONFERENCE ON GAS DISCHARGE PLASMAS AND THEIR APPLICATIONS, 2015, 652
  • [38] Features of Interaction of Molecular Oxygen with Condensation Surface in Low-Pressure Arc Discharge Plasma
    I. V. Karpov
    A. V. Ushakov
    L. Yu. Fedorov
    E. A. Goncharova
    M. V. Brungardt
    V. G. Demin
    Inorganic Materials: Applied Research, 2022, 13 : 945 - 951
  • [39] Magnetic State of the Nickel Oxide Nanoparticles Formed in Low-Pressure Arc Discharge Plasma
    Ushakov, A., V
    Karpov, I., V
    Fedorov, L. Yu
    Demin, V. G.
    Goncharova, E. A.
    Shaikhadinov, A. A.
    RUSSIAN METALLURGY, 2021, 2021 (13): : 1656 - 1660
  • [40] Particularities of the Magnetic State of CuO Nanoparticles Produced by Low-Pressure Plasma Arc Discharge
    A. A. Lepeshev
    I. V. Karpov
    A. V. Ushakov
    D. A. Balaev
    A. A. Krasikov
    A. A. Dubrovskiy
    D. A. Velikanov
    M. I. Petrov
    Journal of Superconductivity and Novel Magnetism, 2017, 30 : 931 - 936