Simulations of cosmic rays in large-scale structures: numerical and physical effects
arXiv:1401.4454 · doi:10.1093/mnras/stu126
Abstract
Non-thermal (relativistic) particles are injected into the cosmos by structure formation shock waves, active galactic nuclei and stellar explosions. We present a suite of unigrid cosmological simulations (up to ) using a two-fluid model in the grid code ENZO. The simulations include the dynamical effects of cosmic-ray (CR) protons and cover a range of theoretically motivated acceleration efficiencies. For the bulk of the cosmic volume the modelling of CR processes is rather stable with respect to resolution, provided that a minimum (cell) resolution of is employed. However, the results for the innermost cluster regions depend on the assumptions for the baryonic physics. Inside clusters, non-radiative runs at high resolution tend to produce an energy density of CRs that are below available upper limits from the FERMI satellite, while the radiative runs are found to produce a higher budget of CRs. We show that weak () shocks and shock-reacceleration are crucial to set the level of CRs in the innermost region of clusters, while in the outer regions the level of CR energy is mainly set via direct injection by stronger shocks, and is less sensitive to cooling and feedback from active galactic nuclei and supernovae.
17 pages, 12 figures. MNRAS accepted. Movies of the largest 2048^3 run can be found here http://www.youtube.com/user/cosmofra
References in corpus (21)
- A unified model for AGN feedback in cosmological simulations of structure formation
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- Observations of extended radio emission in clusters
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- Detecting shock waves in cosmological smoothed particle hydrodynamics simulations
- Cosmic ray feedback in hydrodynamical simulations of galaxy formation
- Shock Waves in Eulerian Cosmological Simulations: Main Properties and Acceleration of Cosmic Rays
- Cosmological Shocks in Adaptive Mesh Refinement Simulations and the Acceleration of Cosmic Rays
- Measuring the non-thermal pressure in early type galaxy atmospheres: A comparison of X-ray and optical potential profiles in M87 and NGC1399
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- Magnetic Field Seeding by Galactic Winds
- 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
- Simulations of cosmic ray feedback by AGN in galaxy clusters
- Non-thermal processes in cosmological simulations
- The effect of feedback and reionization on star formation in low-mass dwarf galaxy haloes
- Time-dependent galactic winds I. Structure and evolution of galactic outflows accompanied by cosmic ray acceleration
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Observable consequences of kinetic and thermal AGN feedback in elliptical galaxies and galaxy clusters
- Glimm-Godunov's Method for Cosmic-ray-hydrodynamics
- A Phenomenological Model for the Intracluster Medium that matches X-ray and Sunyaev-Zel'dovich observations
Cited by in corpus (20)
- First results from the IllustrisTNG simulations: radio haloes and magnetic fields
- Simulating cosmic ray physics on a moving mesh
- 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
- Constraining the efficiency of cosmic ray acceleration by cluster shocks
- Testing cosmic-ray acceleration with radio relics: a high-resolution study using MHD and tracers
- Differences in Faraday Rotation Between Adjacent Extragalactic Radio Sources as a Probe of Cosmic Magnetic Fields
- Forecasts for the detection of the magnetised cosmic web from cosmological simulations
- Fast magnetic field amplification in distant galaxyclusters
- A survey of the thermal and non-thermal properties of cosmic filaments
- Properties of Cosmological Filaments extracted from Eulerian Simulations
- High-energy neutrinos from sources in clusters of galaxies
- Shock finding on a moving-mesh: II. Hydrodynamic shocks in the Illustris universe
- Testing Secondary Models for the Origin of Radio Mini-Halos in Galaxy Clusters
- Shocks in the Stacked Sunyaev-Zel'dovich Profiles of Clusters II: Measurements from SPT-SZ + Planck Compton-y Map
- Galactic outflow and diffuse gas properties at z>=1 using different baryonic feedback models
- Adaptive mesh refinement simulations of a galaxy cluster merger - I. Resolving and modelling the turbulent flow in the cluster outskirts
- Limiting the shock acceleration of cosmic-ray protons in the ICM
- Exploring the role of cosmological shock waves in the Dianoga simulations of galaxy clusters
- On the Binary Nature of the Progenitor of SN2015ap: Insights from Its Light Curve and Spectral Evolution