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Phys. Plasmas 15, 103105 (2008); http://dx.doi.org/10.1063/1.2988772 (10 pages)

Charged particle acceleration in dense plasma channels

I. Y. Dodin and N. J. Fisch

Department of Astrophysical Sciences, Princeton University, Princeton, New Jersey 08544, USA

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(Received 7 July 2008; accepted 3 September 2008; published online 6 October 2008)

Reduced nonlinear equations are derived from the oscillation amplitude and the energy of a charged particle accelerated in a plasma channel. The maximum energy gain, as limited by dissipation, is described by three different scalings depending on the channel parameters.

© 2008 American Institute of Physics

Article Outline

  1. INTRODUCTION
    1. Motivation
    2. Historical background
    3. Outline
  2. MOTION EQUATIONS
  3. PARAMETERS OF MOTION
    1. Accelerating force
    2. Focusing strength
    3. Pitch-angle scattering
    4. Friction force
    5. Photon recoil
  4. NORMALIZED MOTION EQUATIONS
  5. LINEAR ENERGY GAIN
  6. REDUCED NONLINEAR EQUATIONS
    1. Basic equations
    2. Radiative deceleration
    3. Linear equation for the beam emittance
    4. Nonlinear equation for the beam emittance
  7. ACCELERATION REGIMES
  8. CONCLUSIONS

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KEYWORDS and PACS

PACS

  • 52.25.Fi

    Transport properties

  • 52.35.Mw

    Nonlinear phenomena: waves, wave propagation, and other interactions (including parametric effects, mode coupling, ponderomotive effects, etc.)

  • 52.38.Kd

    Laser-plasma acceleration of electrons and ions

  • 52.40.Mj

    Particle beam interactions in plasmas

ARTICLE DATA

PUBLICATION DATA

ISSN

1070-664X (print)  
1089-7674 (online)

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