• DocumentCode
    1435274
  • Title

    Numerical model for low-frequency ion waves in magnetized dusty plasmas

  • Author

    Chae, Gyoo-Soo ; Scales, Wayne A. ; Ganguli, Gurudas ; Bernhardt, Paul A. ; Lampe, Martin

  • Author_Institution
    Bradley Dept. of Electr. Eng., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
  • Volume
    28
  • Issue
    5
  • fYear
    2000
  • fDate
    10/1/2000 12:00:00 AM
  • Firstpage
    1694
  • Lastpage
    1705
  • Abstract
    A two-dimensional (2-D) numerical model is presented to study low-frequency ion waves and instabilities in magnetized dusty plasmas. Fundamental differences exist between dusty plasmas and electron-ion plasmas because of dust charging processes. Therefore, a primary goal of this investigation is to consider the unique effects of dust charging on collective effects in dusty plasmas. The background plasma electrons and ions are treated as two interpenetrating fluids whose densities are self-consistently reduced by dust charging. The dust is treated with a particle-in-cell (PIC) model in which the dust charge varies with time according to the standard dust charging model. Fourier spectral methods with a predictor-corrector time advance are used to temporally evolve the background plasma electron and ion equations. The dust charge fluctuation mode and the damping of lower hybrid oscillations due to dust charging, as well as plasma instabilities associated with dust expansion into a background plasma, are investigated using our numerical model. The numerical simulation results show good agreement with previous theoretical predictions and provide further insight into dust charging effects on wave modes and instabilities in dusty plasmas
  • Keywords
    dusty plasmas; plasma density; plasma fluctuations; plasma impurities; plasma instability; plasma oscillations; plasma simulation; plasma waves; predictor-corrector methods; 2D numerical model; Fourier spectral methods; background plasma; background plasma electron equations; background plasma electrons; background plasma ion equations; background plasma ions; collective effects; damping; densities; dust charge; dust charge fluctuation mode; dust charging; dust charging effects; dust charging processes; dust expansion; dusty plasmas; electron-ion plasmas; instabilities; interpenetrating fluids; low-frequency ion waves; lower hybrid oscillations; magnetized dusty plasmas; numerical model; numerical simulation; particle-in-cell model; plasma instabilities; predictor-corrector time advance; standard dust charging model; two-dimensional numerical model; wave modes; Damping; Dusty plasma; Electrons; Equations; Fluctuations; Numerical models; Plasma density; Plasma simulation; Plasma waves; Two dimensional displays;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/27.901256
  • Filename
    901256