Lepton Acceleration by Relativistic Collisionless Magnetic Reconnection
arXiv:astro-ph/0210045 · doi:10.1086/367640
Abstract
We have calculated self-consistent equilibria of a collisionless relativistic electron-positron gas in the vicinity of a magnetic point. For the considered conditions, pertinent to extra-galactic jets, we find that leptons are accelerated up to Lorentz factors , where is the typical magnetic field strength, , with the reconnection electric field, is the length scale of the magnetic field, and . The acceleration is due to the dominance of the electric field over the magnetic field in a region around the point. The distribution function of the accelerated leptons is found to be approximately for . The apparent distribution function may be steeper than due to the distribution of values and/or the radiative losses. Self-consistent equilibria are found only for plasma inflow rates to the point less than a critical value.
submitted to ApJ; 6 figures
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