• DocumentCode
    3610612
  • Title

    Electron-Beam Dynamics for an Advanced Flash-Radiography Accelerator

  • Author

    Ekdahl, Carl

  • Author_Institution
    Los Alamos Nat. Lab., Los Alamos, NM, USA
  • Volume
    43
  • Issue
    12
  • fYear
    2015
  • Firstpage
    4123
  • Lastpage
    4129
  • Abstract
    Beam dynamics issues were assessed for a new linear induction electron accelerator being designed for multipulse flash radiography of large explosively driven hydrodynamic experiments. Special attention was paid to equilibrium beam transport, possible emittance growth, and beam stability. Especially problematic would be high-frequency beam instabilities that could blur individual radiographic source spots, low-frequency beam motion that could cause pulse-to-pulse spot displacement, and emittance growth that could enlarge the source spots. Beam physics issues were examined through theoretical analysis and computer simulations, including particle-in-cell codes. Beam instabilities investigated included beam breakup, image displacement, diocotron, parametric envelope, ion hose, and the resistive wall instability. Beam corkscrew motion and emittance growth from beam mismatch were also studied. It was concluded that a beam with radiographic quality equivalent to the present accelerators at Los Alamos National Laboratory will result if the same engineering standards and construction details are upheld.
  • Keywords
    electron accelerators; electron beams; hydrodynamics; plasma accelerators; plasma diagnostics; plasma instability; plasma simulation; plasma transport processes; plasma-wall interactions; beam corkscrew motion; computer simulations; diocotron; electron-beam dynamics; electron-beam instabilities; high-frequency beam instabilities; image displacement; ion hose; large explosively driven hydrodynamic experiments; linear induction electron accelerator; low-frequency beam motion; multipulse flash radiography accelerator; parametric envelope; particle-in-cell codes; pulse-to-pulse spot displacement; resistive wall instability; Electron beams; Linear accelerators; Oscillators; Radiography; Solenoids; Electron beam instabilities; flash radiography; linear induction accelerator (LIA); linear induction accelerator (LIA).;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2015.2496499
  • Filename
    7330021