Electron Acceleration at Rippled Low-Mach-number Shocks in High-beta Collisionless Cosmic Plasmas
arXiv:2107.00508 · doi:10.3847/1538-4357/ac1107
Abstract
Using large-scale fully-kinetic two-dimensional particle-in-cell simulations, we investigate the effects of shock rippling on electron acceleration at low-Mach-number shocks propagating in high- plasmas, in application to merger shocks in galaxy clusters. We find that the electron acceleration rate increases considerably when the rippling modes appear. The main acceleration mechanism is stochastic shock-drift acceleration, in which electrons are confined at the shock by pitch-angle scattering off turbulence and gain energy from the motional electric field. The presence of multi-scale magnetic turbulence at the shock transition and the region immediately behind the main shock overshoot is essential for electron energization. Wide-energy non-thermal electron distributions are formed both upstream and downstream of the shock. The maximum energy of the electrons is sufficient for their injection into diffusive shock acceleration. We show for the first time that the downstream electron spectrum has a~power-law form with index , in agreement with observations.
15 pages, 14 figures, to be published in ApJ
References in corpus (13)
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- Non-Thermal Electron Acceleration in Low Mach Number Collisionless Shocks. I. Particle Energy Spectra and Acceleration Mechanism
- Production of Magnetic Turbulence by Cosmic Rays Drifting Upstream of Supernova Remnant Shocks
- Non-Thermal Electron Acceleration in Low Mach Number Collisionless Shocks. II. Firehose-Mediated Fermi Acceleration and its Dependence on Pre-Shock Conditions
- Chandra observation of two shock fronts in the merging galaxy cluster Abell 2146
- Electron Surfing and Drift Accelerations in a Weibel-dominated High-Mach-number Shock
- Observational Evidence for Stochastic Shock Drift Acceleration of Electrons at the Earth's Bow Shock
- Theory of Stochastic Shock Drift Acceleration for Electrons in the Shock Transition Region
- Electron Preacceleration in Weak Quasi-perpendicular Shocks in High-beta Intracluster Medium
- A critical Mach number for electron injection in collisionless shocks
- Kinetic simulations of nonrelativistic perpendicular shocks of young supernova remnants. I. Electron shock-surfing acceleration
- Particle-in-cell simulations of particle energization via shock drift acceleration from low Mach number quasi-perpendicular shocks in solar flares
- Particle-in-cell simulations of particle energization from low Mach number fast mode shocks