• DocumentCode
    1617448
  • Title

    Gyrotron Collective Thomson Scattering Diagnostics of Fast Ions in Textor and Asdex Upgrade

  • Author

    Woskov, P.P. ; Korsholm, S.B. ; Bindslev, H. ; Leipold, F. ; Meo, F. ; Michelsen, P.K. ; Michelsen, S. ; Nielsen, S.K. ; Westerhof, E. ; Oosterbeek, J.W. ; Hoekzema, J. ; Leuterer, F. ; Wagner, D.

  • Author_Institution
    MIT, Cambridge
  • fYear
    2007
  • Firstpage
    304
  • Lastpage
    304
  • Abstract
    Summary form only given. A critical need exists for confined fast ion diagnostics in tokamak fusion experiments, particularly for fusion product alpha particles in ITER and future fusion burning experiments. To develop this diagnostic capability and in support of current fast ion plasma physics research, collective Thomson scattering (CTS) diagnostics have been implemented at TEXTOR and ASDEX Upgrade (AUG) tokamaks using available gyrotron infrastructure with the addition of sensitive scattered signal receiver systems. At TEXTOR a 180 kW, 110 GHz gyrotron and a 42 channel. 6 GHz bandwidth heterodyne receiver has achieved up to 100 CTS scattered spectra per plasma shot with 4 ms time and 10 cm spatial resolution. Large scattering angles (~160deg) with steerable optics enable observation of fast ion spatial and field orientation anisotropies. Studies of fast ion dynamics behavior with neutral beam injection (NBI) and ion cyclotron heating have commenced, resulting in unique observations of fast ions redistributions during sawteeth and slow down after NBI turn off. At AUG a 1 MW, 105 GHz mode of a two-frequency gyrotron with a 50 channel, 10 GHz bandwidth receiver is becoming operational for CTS diagnostics with resolutions similar to TEXTOR. Precise gyrotron frequency measurements, notch filter timing, transmission line alignments, and receiver field of view mappings inside the tokamak have been accomplished using novel beam profile instrumentation. AUG-CTS commissioning progress will be presented. Plasma measurements in AUG are expected to provide new insights into fast ion physics and to further validate gyrotron CTS as a fast ion diagnostic tool for ITER.
  • Keywords
    Tokamak devices; plasma beam injection heating; plasma diagnostics; plasma radiofrequency heating; plasma toroidal confinement; ASDEX Upgrade; ITER; TEXTOR; bandwidth 10 GHz; bandwidth 6 GHz; beam profile instrumentation; fast ion diagnostics; fast ion spatial anisotropy; field orientation anisotropy; frequency 105 GHz; frequency 110 GHz; fusion product alpha particles; gyrotron collective Thomson scattering diagnostics; heterodyne receiver; ion cyclotron heating; neutral beam injection; notch filter timing; plasma measurements; power 1 MW; power 180 kW; steerable optics; tokamak fusion; transmission line alignments; Bandwidth; Gyrotrons; Optical receivers; Optical scattering; Particle scattering; Physics; Plasma confinement; Plasma diagnostics; Tokamaks; Variable speed drives;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Plasma Science, 2007. ICOPS 2007. IEEE 34th International Conference on
  • Conference_Location
    Albuquerque, NM
  • ISSN
    0730-9244
  • Print_ISBN
    978-1-4244-0915-0
  • Type

    conf

  • DOI
    10.1109/PPPS.2007.4345610
  • Filename
    4345610