• DocumentCode
    901661
  • Title

    Long-pulse beam stability experiments on the DARHT-II linear induction accelerator

  • Author

    Ekdahl, Carl ; Abeyta, E.O. ; Aragon, P. ; Archuleta, R. ; Bartsch, R. ; Bender, H. ; Briggs, R. ; Broste, W. ; Carlson, C. ; Chan, K.C.D. ; Dalmas, D. ; Eversole, S. ; Frayer, D. ; Gallegos, R. ; Harrison, J. ; Hughes, T. ; Jacquez, E. ; Johnson, D. ; Jo

  • Author_Institution
    Los Alamos Nat. Lab., NM, USA
  • Volume
    34
  • Issue
    2
  • fYear
    2006
  • fDate
    4/1/2006 12:00:00 AM
  • Firstpage
    460
  • Lastpage
    466
  • Abstract
    When completed, the DARHT-II linear induction accelerator (LIA) will produce a 2-kA, 17-MeV electron beam in a 1600-ns flat-top pulse. In initial tests, DARHT-II accelerated beams with current pulse lengths from 500 to 1200 ns full-width at half-maximum (FWHM) with more than 1.2-kA, 12.5-MeV peak current and energy. Experiments have now been done with a ∼1600-ns pulse length. These pulse lengths are all significantly longer than any other multimegaelectronvolt LIA, and they define a novel regime for high-current beam dynamics, especially with regard to beam stability. Although the initial tests demonstrated insignificant beam-breakup instability (BBU), the pulse length was too short to determine whether ion-hose instability would be present toward the end of a long, 1600-ns pulse. The 1600-ns pulse experiments reported here resolved these issues for the long-pulse DARHT-II LIA.
  • Keywords
    electron beams; linear accelerators; particle beam dynamics; particle beam stability; 12.5 MeV; 1600 ns; 17 MeV; 2 kA; 500 to 1200 ns; DARHT-II linear induction accelerator; beam-breakup instability; electron beam; full-width at half-maximum; high-current beam dynamics; ion-hose instability; long-pulse beam stability; Acceleration; Electron accelerators; Electron beams; Ion accelerators; Life estimation; Linear accelerators; Particle accelerators; Particle beams; Stability; Testing; Accelerator measurement systems; accelerators; induction accelerators; particle beams; stability;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2006.872481
  • Filename
    1621331