Stochastic Ion Acceleration by the Ion-cyclotron Instability in a Growing Magnetic Field
Abstract
Using 1D and 2D particle-in-cell (PIC) simulations of a plasma with a growing magnetic field , we show that ions can be stochastically accelerated by the ion-cyclotron (IC) instability. As grows, an ion pressure anisotropy arises, due to the adiabatic invariance of the ion magnetic moment ( and are the ion pressures parallel and perpendicular to ). When initially (, where is the ion isotropic pressure), the pressure anisotropy is limited mainly by inelastic pitch-angle scattering provided by the IC instability, which in turn produces a non-thermal tail in the ion energy spectrum. After is amplified by a factor , this tail can be approximated as a power-law of index plus two non-thermal bumps, and accounts for of the ions and of their kinetic energy. On the contrary, when initially , the ion scattering is dominated by the mirror instability and the acceleration is suppressed. This implies that efficient ion acceleration requires that initially . Although we focus on cases where is amplified by plasma shear, we check that the acceleration occurs similarly if grows due to plasma compression. Our results are valid in a sub-relativistic regime where the ion thermal energy is of the ion rest mass energy. This acceleration process can thus be relevant in the inner region of low-luminosity accretion flows around black holes.
Keywords
Cite
@article{arxiv.1903.11238,
title = {Stochastic Ion Acceleration by the Ion-cyclotron Instability in a Growing Magnetic Field},
author = {Francisco Ley and Mario Riquelme and Lorenzo Sironi and Daniel Verscharen and Astor Sandoval},
journal= {arXiv preprint arXiv:1903.11238},
year = {2019}
}