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      Non-thermal particle acceleration from maximum entropy in collisionless plasmas

      Journal of Plasma Physics
      Cambridge University Press (CUP)

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          Abstract

          Dissipative processes cause collisionless plasmas in many systems to develop non-thermal particle distributions with broad power-law tails. The prevalence of power-law energy distributions in space/astrophysical observations and kinetic simulations of systems with a variety of acceleration and trapping (or escape) mechanisms poses a deep mystery. We consider the possibility that such distributions can be modelled from maximum-entropy principles, when accounting for generalizations beyond the Boltzmann–Gibbs entropy. Using a dimensional representation of entropy (related to the Renyi and Tsallis entropies), we derive generalized maximum-entropy distributions with a power-law tail determined by the characteristic energy scale at which irreversible dissipation occurs. By assuming that particles are typically energized by an amount comparable to the free energy (per particle) before equilibrating, we derive a formula for the power-law index as a function of plasma parameters for magnetic dissipation in systems with sufficiently complex topologies. The model reproduces several results from kinetic simulations of relativistic turbulence and magnetic reconnection.

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          Possible generalization of Boltzmann-Gibbs statistics

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            Particle acceleration at astrophysical shocks: A theory of cosmic ray origin

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              On the Origin of the Cosmic Radiation

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                Author and article information

                Contributors
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                Journal
                Journal of Plasma Physics
                J. Plasma Phys.
                Cambridge University Press (CUP)
                0022-3778
                1469-7807
                June 2022
                June 30 2022
                June 2022
                : 88
                : 3
                Article
                10.1017/S0022377822000551
                81d8e348-66e6-4b40-ac21-ec590dae6f52
                © 2022

                https://www.cambridge.org/core/terms

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