• DocumentCode
    1766502
  • Title

    Relaxation Electron Surface Emission From Space Used Polymers

  • Author

    Paulmier, T. ; Dirassen, B. ; Belhaj, M. ; Payan, Denis ; Balcon, Nicolas

  • Author_Institution
    Office Nat. d´Etudes et de Rech. Aerospatiales, French Aerosp. Lab., Toulouse, France
  • Volume
    41
  • Issue
    12
  • fYear
    2013
  • fDate
    Dec. 2013
  • Firstpage
    3416
  • Lastpage
    3421
  • Abstract
    Dedicated experiments have been developed at ONERA to characterize the charging and relaxation behavior of irradiated space polymers. Postirradiation analyses have been performed through potential kelvin probe and leakage or displacement current measurements. We have been able to demonstrate that polymers are submitted, after irradiation, to electron emission from their surface during the relaxation phase. This electron emission presents very low kinetics and can be intense enough to contribute at significant level to the surface potential drop of these materials. A parametric study has been performed to confirm electron relaxation emission and get a better understanding of the underlying steering mechanisms. This emission process is strongly dependent on the energy of the incident electrons used during irradiation and nature of the irradiated material. We present here the experimental results on electron emission from Kapton and Teflon and discuss the different physical mechanisms that could account for this process. The influence of charge double layer and injected radiation dose could especially explain electron emission from the surface through bulk diffusion and energy release by electron-hole recombination process.
  • Keywords
    aerospace materials; dielectric materials; electron field emission; electron-hole recombination; leakage currents; polymers; surface diffusion; surface energy; surface potential; Kapton; Teflon; bulk diffusion; charge double layer; charging; displacement current; electron-hole recombination; energy release; injected radiation; irradiated spaced used polymers; kelvin probe; kinetics; leakage current; physical mechanisms; postirradiation analyses; relaxation behavior; relaxation electron surface emission; steering mechanisms; surface potential; Current measurement; Electric potential; Electron beams; Electron emission; Materials; Radiation effects; Surface treatment; Dielectric materials; electron emission; electron radiation effects; relaxation processes; space technology;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2013.2279317
  • Filename
    6671451