Electric Field on the Surface of a Metal Electrode Covered by a Dielectric Film in Plasma

被引:0
|
作者
Ivanov, V. A. [1 ]
Konyzhev, M. E. [1 ]
Tereshchenko, M. A. [1 ]
Dorofeyuk, A. A. [1 ]
Kamolova, T. I. [1 ]
Satunin, S. N. [1 ]
机构
[1] Russian Acad Sci, Prokhorov Gen Phys Inst, Moscow 119991, Russia
关键词
metal electrode; dielectric film; plasma; electric field; electrical breakdown of film; MICROPLASMA DISCHARGES; TITANIUM; PROPAGATION; EXCITATION; EDGE;
D O I
10.1134/S1063780X24601056
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
tElectric field on the surface of a metal electrode covered by a continuous dielectric film and immersed in plasma is calculated at negative electrode potential Psi when parameter e Psi substantially exceeds electron temperature T-e (e Psi/T-e >> 1). It is established that strong electric field with a magnitude of 1-10 MV/cm can appear inside the film at plasma density of 10(12)-10(13) cm(-3) and electron temperature of T-e = 10 eV as a result of charging of the outer film 10-1000 nm in thickness surface by a flux of positive ions from plasma. The magnitude of the electric field at film discontinuities is comparable to that inside the film. The magnitude of the electric field at the surface of the dielectric film and at the film-free clean metal surface in plasma is substantially lower than that inside the film. Strong electric fields inside the film and at its discontinuities can lead to electrical breakdown inside the film and at its discontinuities. The electrical breakdown of the dielectric film can initiate the unipolar arcing on metals, drive microplasma discharges and form centers of explosive electron emission on metal surfaces in plasma.
引用
收藏
页码:865 / 874
页数:10
相关论文
共 50 条
  • [1] Electric Field on the Surface of a Metal Electrode Immersed in Plasma at a High Negative Potential
    Ivanov, V. A.
    PLASMA PHYSICS REPORTS, 2023, 49 (02) : 284 - 289
  • [2] Generalized Formula for Calculating the Electric Field on the Electrode Surface in Plasma
    Ivanov, V. A.
    Konyzhev, M. E.
    Kamolova, T. I.
    Dorofeyuk, A. A.
    JOURNAL OF COMMUNICATIONS TECHNOLOGY AND ELECTRONICS, 2024, 69 (4-6) : 129 - 135
  • [3] Electric Field on the Surface of a Metal Electrode Immersed in Plasma at a High Negative Potential
    V. A. Ivanov
    Plasma Physics Reports, 2023, 49 : 284 - 289
  • [4] Propagation of Microplasma Discharge over Titanium Surface Covered with Thin Dielectric Film
    Ivanov, V. A.
    Konyzhev, M. E.
    Kamolova, T., I
    Dorofeyuk, A. A.
    PLASMA PHYSICS REPORTS, 2021, 47 (06) : 603 - 610
  • [5] Generalized formula for calculating the electric field on the electrode surface in plasma
    Ivanov V.A.
    Konyzhev M.E.
    Kamolova T.I.
    Dorofeyuk A.A.
    Applied Physics, 2023, (05): : 5 - 14
  • [6] Propagation of Microplasma Discharge over Titanium Surface Covered with Thin Dielectric Film
    V. A. Ivanov
    M. E. Konyzhev
    T. I. Kamolova
    A. A. Dorofeyuk
    Plasma Physics Reports, 2021, 47 : 603 - 610
  • [7] Current-voltage characteristic of the contact of a plasma with an electrode with a thin dielectric film on the surface
    K. M. Gutorov
    I. V. Vizgalov
    I. A. Sorokin
    F. S. Podolyako
    JETP Letters, 2015, 100 : 708 - 711
  • [8] Electric field development in positive and negative streamers on dielectric surface
    Jansky, J.
    Bessieres, D.
    Brandenburg, R.
    Paillol, J.
    Hoder, T.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2021, 30 (10)
  • [9] Structure of microplasma discharge on titanium surface covered with thin dielectric film
    Ivanov, V. A.
    Konyzhev, M. E.
    Dorofeyuk, A. A.
    Kamolova, T., I
    XLVII ZVENIGOROD INTERNATIONAL CONFERENCE ON PLASMA PHYSICS AND CONTROLLED FUSION, 2020, 1647
  • [10] Characteristics of Microplasma Discharge Propagation Over the Titanium Surface Covered with a Thin Oxide Film
    Ivanov, V. A.
    Konyzhev, M. E.
    Kamolova, T. I.
    Dorofeyuk, A. A.
    JOURNAL OF COMMUNICATIONS TECHNOLOGY AND ELECTRONICS, 2023, 68 (09) : 1067 - 1076