Shocks and non-thermal particles in clusters of galaxies
arXiv:1902.00240 · doi:10.1007/s11214-019-0585-y
Abstract
Galaxy clusters grow by gas accretion, mostly from mergers of substructures, which release powerful shock waves into cosmic plasmas and convert a fraction of kinetic energy into thermal energy, amplification of magnetic fields and into the acceleration of energetic particles. The modeling of the radio signature of cosmic shocks, combined with the lack of detected gamma-rays from cosmic ray (CR) protons, poses challenges to our understanding of how cosmic rays get accelerated and stored in the intracluster medium. Here we review the injection of CRs by cosmic shocks of different strengths, combining the detailed "microscopic" view of collisionless processes governing the creation of non-thermal distributions of electrons and protons in cluster shocks (based on analytic theory and particle-in-cell simulations), with the "macroscopic" view of the large-scale distribution of cosmic rays, suggested by modern cosmological simulations. We discuss time dependent non-linear kinetic models of particle acceleration by multiple internal shocks with large scale compressible motions of plasma. The models produce soft CR spectra containing a noticeable energy density in the super-thermal protons of energies below a few GeV which are difficult to constrain by Fermi observations. We consider the effect of plasma composition on CR injection and super-thermal particle population in the hot intracluster matter which can be constrained by fine high resolution X-ray spectroscopy of Fe ions.
Space Science Reviews, in print
References in corpus (41)
- Shocks and cold fronts in galaxy clusters
- Diffuse Radio Emission from Galaxy Clusters
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- Observations of extended radio emission in clusters
- Detecting shock waves in cosmological smoothed particle hydrodynamics simulations
- Radio signature of cosmological structure formation shocks
- Cosmic ray feedback in hydrodynamical simulations of galaxy formation
- Shock Waves in Eulerian Cosmological Simulations: Main Properties and Acceleration of Cosmic Rays
- Simulating cosmic rays in clusters of galaxies - II. A unified scheme for radio halos and relics with predictions of the gamma-ray emission
- Non-Thermal Electron Acceleration in Low Mach Number Collisionless Shocks. I. Particle Energy Spectra and Acceleration Mechanism
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- Simulating cosmic rays in clusters of galaxies - I. Effects on the Sunyaev-Zel'dovich effect and the X-ray emission
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- Cosmic ray physics in calculations of cosmological structure formation
- A new double radio relic in PSZ1 G096.89+24.17 and a radio relic mass-luminosity relation
- Non-Thermal Electron Acceleration in Low Mach Number Collisionless Shocks. II. Firehose-Mediated Fermi Acceleration and its Dependence on Pre-Shock Conditions
- Cosmic ray-driven galactic winds: streaming or diffusion?
- Turbulence and Particle Acceleration in Giant Radio Haloes: the Origin of Seed Electrons
- Relativistic protons in the Coma galaxy cluster: first gamma-ray constraints ever on turbulent reacceleration
- Diffuse radio emission from clusters in the MareNostrum Universe simulation
- Nonlinear growth of firehose and mirror fluctuations in turbulent galaxy-cluster plasmas
- Chemical evolution in Sersic 159-03 observed with XMM-Newton
- The dependence of cosmic ray driven galactic winds on halo mass
- Magnetic field amplification in nonlinear diffusive shock acceleration including resonant and non-resonant cosmic-ray driven instabilities
- Particle acceleration mechanisms
- Nonrelativistic collisionless shocks in weakly magnetized electron--ion plasmas: two-dimensional particle-in-cell simulation of perpendicular shock
- Cosmological shock waves
- Testing cosmic-ray acceleration with radio relics: a high-resolution study using MHD and tracers
- High-energy gamma-ray and neutrino backgrounds from clusters of galaxies and radio constraints
- Cosmic ray production in supernovae
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- The Effect of Anisotropic Viscosity on Cold Fronts in Galaxy Clusters
- On the electron-ion temperature ratio established by collisionless shocks
- Equilibration processes in the Warm-Hot Intergalactic Medium
- An Efficient Fokker-Planck Solver and its Application to Stochastic Particle Acceleration in Galaxy Clusters
- Electron Heating in Low Mach Number Perpendicular shocks. I. Heating Mechanism
- Effects of sedimented helium on the X-ray properties of galaxy clusters
- High Effects on Cosmic Ray Streaming in Galaxy Clusters
- New Limits On Gamma-Ray Emission From Galaxy Clusters
- An in situ comparison of electron acceleration at collisionless shocks under differing upstream magnetic field orientations