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How it cramps the flow: three regimes for the saturation of parallel ion-beam instabilities

Published 29 May 2018 in physics.plasm-ph, astro-ph.HE, and physics.space-ph | (1805.11220v1)

Abstract: Motivated by recent advances in laboratory experiments on parallel ion-beam instabilities, we present a theoretical framework for and simulations of their evolution towards shock formation and Fermi acceleration. After reviewing the theory of beam instabilities with a focus on the so-called nonresonant or Bell instability, which we show to be due to the gyromotion of background ions, we contrast the saturation of three parameter regimes: (I) the left-handed "nonresonant" regime, (II) the right-handed beam-gyroresonant regime, (III) the balanced, mixed-turbulence regime.

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