Reconstruction of energy spectrum of runaway electrons in nanosecond-pulse discharges in atmospheric air

被引:0
|
作者
邱锦涛 [1 ,2 ]
章程 [1 ,2 ]
刘泽慧 [1 ,2 ]
黄邦斗 [1 ]
邵涛 [1 ,2 ]
机构
[1] Beijing International S&T Cooperation Base for Plasma Science and Energy Conversion, Institute of Electrical Engineering, Chinese Academy of Sciences
[2] University of Chinese Academy of
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents an experimental investigation into the runaway electron spectrum with a gas diode composed of a rough spherical cathode and plane anode under the excitation of a nanosecond-pulse generator in atmospheric air. The runaway electron beams are measured by a collector covered with aluminum foil with a thickness from 0 μm(mesh grid) to 50 μm. The energy spectrum is calculated by an improved Tikhonov regularization called the maximum entropy method. The experimental results show that the transition state of the discharge consisted of multiple streamer channels stretched from the cathode with glow-like plasma uniformly distributed over the anode. The number of runaway electrons measured by the collector is in the order of 1010 in atmospheric pressure air with a gap spacing of 5 mm and applied voltages of70–130 kV. The cathode with a rough surface creates a more inhomogeneous electric field and larger emission site for the runaway electrons around the cathode, providing conditions for the coexistence of filamentary streamer and diffuse discharge. The reconstructed spectra show that the energy distribution of the runaway electrons presents a single-peak profile with energies from eUm/2–2 eUm/3(Um is maximal voltage across the gap).
引用
收藏
页码:103 / 110
页数:8
相关论文
共 50 条
  • [31] Energy distribution of runaway and fast electrons upon nanosecond volume discharge in atmospheric-pressure air
    Tarasenko, V. F.
    Yakovlenko, S. I.
    Tkachev, A. N.
    Kostyrya, I. D.
    LASER PHYSICS, 2006, 16 (07) : 1039 - 1049
  • [32] Repetitive nanosecond-pulse discharge in a highly nonuniform electric field in atmospheric air: X-ray emission and runaway electron generation
    Shao, Tao
    Tarasenko, Victor F.
    Zhang, Cheng
    Baksht, Evgeni Kh.
    Yan, Ping
    Shut'ko, Yuliya V.
    LASER AND PARTICLE BEAMS, 2012, 30 (03) : 369 - 378
  • [33] Impact of Wire Electrode Length on Nanosecond-Pulse Diffuse Discharge in Atmospheric Pressure Air
    Bin, Yu
    Li, Lee
    Liu, Yun-Long
    Ge, Ya-Feng
    Liu, Lun
    Ma, Ning
    Le, Yang
    Lin, Fu-Chang
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2014, 42 (10) : 2492 - 2493
  • [34] Surface modification of polyimide films using unipolar nanosecond-pulse DBD in atmospheric air
    Shao, Tao
    Zhang, Cheng
    Long, Kaihua
    Zhang, Dongdong
    Wang, Jue
    Yan, Ping
    Zhou, Yuanxiang
    APPLIED SURFACE SCIENCE, 2010, 256 (12) : 3888 - 3894
  • [35] VUV Radiation in the Plasma of Nanosecond Discharges Initiated by Runaway Electrons
    Panchenko, Alexei N.
    Lomaev, Mikhail I.
    Panchenko, Nikolai A.
    Sorokin, Dmitry A.
    Tarasenko, Victor F.
    FOURTH INTERNATIONAL SYMPOSIUM ON LASER INTERACTION WITH MATTER, 2017, 10173
  • [36] An experimental investigation of repetitive nanosecond-pulse breakdown in air
    Shao Tao
    Sun Guangsheng
    Yan Ping
    Wang Jue
    Yuan Weiqun
    Sun Yaohong
    Zhang Shichang
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2006, 39 (10) : 2192 - 2197
  • [37] Formation of hydrophobic coating on PMMA surface using unipolar nanosecond-pulse DBD in atmospheric air
    Xu, Jiayu
    Zhang, Cheng
    Shao, Tao
    Fang, Zhi
    Yan, Ping
    JOURNAL OF ELECTROSTATICS, 2013, 71 (03) : 435 - 439
  • [38] Experimental study on repetitive unipolar nanosecond-pulse dielectric barrier discharge in air at atmospheric pressure
    Shao Tao
    Long Kaihua
    Zhang Cheng
    Yan Ping
    Zhang Shichang
    Pan Ruzheng
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2008, 41 (21)
  • [39] Possible mechanism for the generation of runaway electrons in pulse discharges
    Zabaidullin, OZ
    Dubau, J
    PLASMA PHYSICS REPORTS, 1999, 25 (09) : 720 - 727
  • [40] PIC-MCC Numerical Study on Discharge Characteristics of Atmospheric Nanosecond-pulse Discharges Without Dielectric Barriers
    Xin X.
    Liu B.
    Zhang Y.
    Gaodianya Jishu/High Voltage Engineering, 2018, 44 (03): : 944 - 951