• DocumentCode
    901213
  • Title

    Radiation properties and implosion dynamics of planar and cylindrical wire arrays, asymmetric and symmetric, uniform and combined X-pinches on the UNR 1-MA zebra generator

  • Author

    Kantsyrev, Victor L. ; Safronova, Alla S. ; Fedin, Dmitry A. ; Ivanov, Vladimir V. ; Esaulov, Andrey A. ; Nalajala, Vidya ; Shrestha, Ishor ; Pokala, Shivaji ; Williamson, Kenneth ; Ouart, Nicholas D. ; Yilmaz, M. Fatih ; Laca, Paul ; Cowan, Thomas E. ; R

  • Author_Institution
    Univ. of Nevada, Reno, NV, USA
  • Volume
    34
  • Issue
    2
  • fYear
    2006
  • fDate
    4/1/2006 12:00:00 AM
  • Firstpage
    194
  • Lastpage
    212
  • Abstract
    In the following experiments, we studied implosions of different wire arrays and X-pinches produced on the 1-MA Zebra generator at the University of Nevada, Reno. Diagnostics included both spatially-resolved and time-gated X-ray imaging and spectroscopy, and laser probing. In particular, we compared planar wire arrays, to which little energy could be coupled via the conventional magnetic-to-kinetic conversion mechanism, to cylindrical wire arrays of comparable dimensions and mass. The planar wire arrays were shown to radiate much higher peak power and more energy in subkiloelectronvolt and kiloelectronvolt spectral ranges than cylindrical wire arrays. We tested the theoretical conjecture that enhanced resistivity due to the small-scale inhomogeneity of wire-array plasmas has a major effect on dynamics, energy coupling and radiation performance of wire-array Z-pinches. The study of Al, Alumel, and W cylindrical wire arrays shows a wide variety of characteristic behaviors in plasma implosions discussed hereinafter. Additional experimental results for symmetric and asymmetric, uniform stainless steel, Cu, Mo, combined Al/Mo, Mo/Al, Al/W, W/Al, and Mo/W X-pinches are also presented. New data for the total radiation yield are obtained. The planar structures of X-pinch plasma and the corresponding electron beam was observed for most of X-pinches. The generation of hot spots along original wires positions-cooler than those from the cross-wire region-and arc structures with hot spots between wires were found for X-pinches composed from Al, Cu, and W wires.
  • Keywords
    Z pinch; aluminium; arcs (electric); copper; exploding wires; explosions; molybdenum; plasma X-ray sources; plasma diagnostics; plasma transport processes; stainless steel; tungsten; 1 MA; Al; Cu; Mo; W; X-pinches; X-ray spectroscopy; Zebra generator; arc structures; cylindrical wire arrays; electron beam; energy coupling; hot spots; implosion dynamics; laser probing; magnetic-to-kinetic conversion; planar wire arrays; radiation properties; spatially-resolved X-ray imaging; time-gated X-ray imaging; wire-array Z-pinches; wire-array plasma inhomogeneity; Conductivity; Couplings; Electron beams; Plasma properties; Spectroscopy; Steel; Testing; Wire; X-ray imaging; X-ray lasers; Wire arrays; X-pinches; X-ray imaging; X-ray spectroscopy; Z-pinch;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2006.872173
  • Filename
    1621287