English

Lepton Acceleration by Relativistic Collisionless Magnetic Reconnection

Astrophysics 2009-11-07 v1

Abstract

We have calculated self-consistent equilibria of a collisionless relativistic electron-positron gas in the vicinity of a magnetic XX-point. For the considered conditions, pertinent to extra-galactic jets, we find that leptons are accelerated up to Lorentz factors Γ0=κeB0LE2/mc21\Gamma_0 = \kappa e B_0L {\cal E}^2 /mc^2 \gg 1, where B0B_0 is the typical magnetic field strength, EE0/B0{\cal E}\equiv E_0/B_0, with E0E_0 the reconnection electric field, LL is the length scale of the magnetic field, and κ12\kappa \approx 12. The acceleration is due to the dominance of the electric field over the magnetic field in a region around the XX-point. The distribution function of the accelerated leptons is found to be approximately dn/dγγ1dn/d\gamma \propto \gamma^{-1} for γΓ0\gamma \lesssim \Gamma_0. The apparent distribution function may be steeper than γ1\gamma^{-1} due to the distribution of Γ0\Gamma_0 values and/or the radiative losses. Self-consistent equilibria are found only for plasma inflow rates to the XX-point less than a critical value.

Cite

@article{arxiv.astro-ph/0210045,
  title  = {Lepton Acceleration by Relativistic Collisionless Magnetic Reconnection},
  author = {D. A. Larrabee and R. V. E. Lovelace and M. M. Romanova},
  journal= {arXiv preprint arXiv:astro-ph/0210045},
  year   = {2009}
}

Comments

submitted to ApJ; 6 figures

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