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Showing 1 to 3 of 3 for “"Lorentz-Dirac equation"”.

  1. Motion of charged particles in pulsar magnetospheres

    … rotational axes we solve a fluid version of the Lorentz-Dirac equation, in the Landau approximation, for a two-component plasma. We start from an approximately force-free initial condition and numerically integrate the equations of motion for a time equal to 1.6% of one stellar rotation period. …

    uiuc Repository record for Motion of charged particles in pulsar magnetospheres (opens in a new tab)

  2. Effects of Radiation Damping in Extreme Ultra-intense Laser-Plasma Interaction

    … problem we developed a code to solve a set of equations describing the evolution of a strong electromagnetic wave interacting with a single electron. Usually the equation of motion of an electron including radiation damping under the influence of electromagnetic fields is derived from the …

    unr Repository record for Effects of Radiation Damping in Extreme Ultra-intense Laser-Plasma Interaction (opens in a new tab)

  3. Theoretical studies of the pulsar magnetosphere

    … calculations. an approximate version of the Lorentz-Dirac equation of motion for a radiating charged particle is given. and exact solutions are presented for two cases of physical interest. Orbits are calculated for a charge in a uniform magnetic field and in a linearly polarized plane wave. …

    uiuc Repository record for Theoretical studies of the pulsar magnetosphere (opens in a new tab)