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Stochastic Particle Acceleration in Multiple Magnetic Islands during Reconnection

Published 4 Jan 2012 in astro-ph.HE | (1201.0837v1)

Abstract: A nonthermal particle acceleration mechanism involving the interaction of a charged particle with multiple magnetic islands is proposed. The original Fermi acceleration model, which assumes randomly distributed magnetic clouds moving at random velocity VcV_c in the interstellar medium, is known to be of second-order acceleration of O(Vc/c)<sup>2O(V_c/c)<sup>2 owing to the combination of head-on and head-tail collisions. In this letter, we reconsider the original Fermi model by introducing multiple magnetic islands during reconnect ion instead of magnetic clouds. We discuss that the energetic particles have a tendency to be distributed outside the magnetic islands, and they mainly interact with reconnection outflow jets. As a result, the acceleration efficiency becomes first-order of O(VA/c)O(V_A/c), where VAV_A and cc are the Alfv\'en velocity and the speed of light, respectively.

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