Particle acceleration in fast magnetic reconnection
A. Lazarian, G. Kowal, E. M. de Gouveia Dal Pino, Ethan T. Vishniac
Abstract
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A. Lazarian, G. Kowal, E. M. de Gouveia Dal Pino, Ethan T. Vishniac
Abstract
Open-access reader
Abstract Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence of weak turbulence in the way consistent with the Lazarian & Vishniac (1999) model of fast reconnection. This process in not only important for understanding of the origin and evolution of the large-scale magnetic field, but is seen as a possibly efficient particle accelerator producing cosmic rays through the first order Fermi process. In this work we study the properties of particle acceleration in the reconnection zones in our numerical simulations and show that the particles can be efficiently accelerated via the first order Fermi acceleration.
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Abstract Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence of weak turbulence in the way consistent with the Lazarian & Vishniac (1999) model of fast reconnection. This process in not only important for understanding of the origin and evolution of the large-scale magnetic field, but is seen as a possibly efficient particle accelerator producing cosmic rays through the first order Fermi process. In this work we study the properties of particle acceleration in the reconnection zones in our numerical simulations and show that the particles can be efficiently accelerated via the first order Fermi acceleration.
Key concepts: Fermi acceleration, Magnetic reconnection, Physics, Particle acceleration, Acceleration, Fermi Gamma-ray Space Telescope, Magnetic field, Turbulence