• DocumentCode
    1045678
  • Title

    Evidence for a Radiation Induced Electromotive Force (RIEMF) in Dielectrics Exposed to Very High 14 MeV Neutron Flux by Means of Neutron Induced Recoils

  • Author

    Leray, Jean-Luc ; Bazzoli, Sébastien ; Sauvestre, Jean-Etienne ; Glebov, Vladimir Yu.

  • Author_Institution
    CEA, Gif-sur-Yvette
  • Volume
    55
  • Issue
    6
  • fYear
    2008
  • Firstpage
    3060
  • Lastpage
    3069
  • Abstract
    To assess phenomena occurring in coaxial cables under high flux of 14 MeV neutrons in D-T fusion experiments, a polyethylene, Teflontrade or vacuum sandwiched between two electrodes mock-up is proposed. This Mock-Up was exposed to the subnanosecond flux at the LLE OMEGA facility in Rochester (above 1018 n/cm2-s) normally to the electrodes or with a tilt angle. A radiation induced current probing a radiation induced electromotive force (RIEMF) is measured and a model is proposed based on the range of the neutron-induced recoils. The GEANT4 simulation toolkit has been used to take advantage of the implementation of both nuclear and electromagnetic processes in order to compute the tracks and the strong angle dependence. Good agreements between simulations and experimental results are found for polyethylene in contrast with Teflontrade where the 3-alpha break-up of 12C not considered in GEANT4 seems to make a major contribution to the measured induced current. Comparison with the photon flux is made.
  • Keywords
    Monte Carlo methods; cable insulation; coaxial cables; dielectric properties; electric potential; polyethylene insulation; radiation effects; D-T fusion; GEANT4 simulation toolkit; Monte Carlo neutron code; Teflontrade; cable insulation; coaxial cables; electrodes mock-up; electron volt energy 14 MeV; induced current measurement; neutron flux; neutron induced recoils; polyethylene; radiation induced electromotive force; Coaxial cables; Computational modeling; Current measurement; Dielectrics; Electrodes; Electromagnetic forces; Electromagnetic measurements; Force measurement; Neutrons; Polyethylene; Cable insulation; Monte Carlo neutron code; RIEMF; SGEMP; laser fusion; neutron radiation effects;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2008.2006171
  • Filename
    4723758