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A Model for Nonthermal Particle Acceleration in Relativistic Magnetic Reconnection

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arxiv 2302.12737 v2 pith:ZTZB2UWW submitted 2023-02-24 astro-ph.HE physics.plasm-ph

classification astro-ph.HEphysics.plasm-ph
keywords particleaccelerationmodelreconnectionnonthermalpower-lawdistributionsenergy
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The past decade has seen an outstanding development of nonthermal particle acceleration in magnetic reconnection in magnetically-dominated systems, with clear signatures of power-law energy distributions as a common outcome of first-principles kinetic simulations. Here we propose a semi-analytical model for systematically investigating nonthermal particle acceleration in reconnection. We show particle energy distributions are well determined by particle injection, acceleration, and escape processes. Using a series of kinetic simulations, we accurately evaluate the energy- and time-dependent model coefficients. The resulting spectral characteristics, including the spectral index and lower and upper bounds of the power-law distribution, agree well with the simulation results. Finally, we apply the model to predict the power-law indices and break energies in astrophysical reconnection systems.

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