Modelling injection and feedback of Cosmic Rays in grid-based cosmological simulations: effects on cluster outskirts
arXiv:1201.3362 · doi:10.1111/j.1365-2966.2012.20562.x
Abstract
We present a numerical scheme, implemented in the cosmological adaptive mesh refinement code ENZO, to model the injection of Cosmic Ray (CR) particles at shocks, their advection and their dynamical feedback on thermal baryonic gas. We give a description of the algorithms and show their tests against analytical and idealized one-dimensional problems. Our implementation is able to track the injection of CR energy, the spatial advection of CR energy and its feedback on the thermal gas in run-time. This method is applied to study CR acceleration and evolution in cosmological volumes, with both fixed and variable mesh resolution. We compare the properties of galaxy clusters with and without CRs, for a sample of high-resolution clusters with different dynamical states. At variance with similar simulations based on Smoothed Particles Hydrodynamics, we report that the inclusion of CR feedback in our method decreases the central gas density in clusters, thus reducing the X-ray and Sunyaev-Zeldovich effect from the clusters centre, while enhancing the gas density and its related observables near the virial radius.
25 pages, 24 figures. MNRAS accepted, in press
References in corpus (25)
- Observations of extended radio emission in clusters
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- A low-frequency radio halo associated with a cluster 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
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- Cluster Magnetic Fields from Galactic Outflows
- A test suite for quantitative comparison of hydrodynamics codes in astrophysics
- Simulating cosmic rays in clusters of galaxies - I. Effects on the Sunyaev-Zel'dovich effect and the X-ray emission
- On the Origin of Cores in Simulated Galaxy Clusters
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- Cosmic ray physics in calculations of cosmological structure formation
- X-ray observations of the galaxy cluster PKS 0745-191: To the virial radius, and beyond
- Simulated X-ray galaxy clusters at the virial radius: slopes of the gas density, temperature and surface brightness profiles
- Diffuse radio emission from clusters in the MareNostrum Universe simulation
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - II. Cosmological simulations of galaxy clusters
- Non-thermal processes in cosmological simulations
- Gamma rays from clusters of galaxies
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Precision cosmology with a wide area XMM cluster survey
- Probing the Off-State of Cluster Giant Radio Halos
- Glimm-Godunov's Method for Cosmic-ray-hydrodynamics
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- Formation of Galaxy Clusters
- Cosmic rays in galaxy clusters and their non-thermal emission
- Cosmic-ray Driven Outflows in Global Galaxy Disk Models
- Simulating cosmic ray physics on a moving mesh
- Rise and Fall of Radio Halos in Simulated Merging Galaxy Clusters
- Constraints on Hydrodynamical Subgrid Models from Quasar Absorption Line Studies of the Simulated Circumgalactic Medium
- The Role of Cosmic Ray Transport in Shaping the Simulated Circumgalactic Medium
- On the Cluster Physics of Sunyaev-Zel'dovich and X-ray Surveys III: Measurement Biases and Cosmological Evolution of Gas and Stellar Mass Fractions
- Probing the origin of giant radio halos through radio and gamma-ray data : the case of the Coma cluster
- Do radio relics challenge diffusive shock acceleration?
- The X-ray/SZ view of the virial region. I. Thermodynamic properties
- Diffusive Shock Acceleration at Cosmological Shock Waves
- Constraining the efficiency of cosmic ray acceleration by cluster shocks
- Shock finding on a moving-mesh: I. Shock statistics in non-radiative cosmological simulations
- Shock Waves and Cosmic Ray Acceleration in the Outskirts of Galaxy Clusters
- Fast magnetic field amplification in distant galaxyclusters
- Probing the cosmic-ray content of galaxy clusters by stacking Fermi-LAT count maps
- The X-ray/SZ view of the virial region. II. Gas mass fraction
- Large-Scale Structure Formation: from the first non-linear objects to massive galaxy clusters
- Shocks and non-thermal particles in clusters of galaxies
- Curved Radio Spectra of Weak Cluster Shocks
- Thermal and non-thermal traces of AGN feedback: results from cosmological AMR simulations
- Properties of Cosmological Filaments extracted from Eulerian Simulations
- Deep Chandra observations of the stripped galaxy group falling into Abell 2142
- Shock-accelerated cosmic rays and streaming instability in the adaptive mesh refinement code Ramses
- Simulations of cosmic ray propagation
- Testing Secondary Models for the Origin of Radio Mini-Halos in Galaxy Clusters
- The impact of the SZ effect on cm-wavelength (1-30 GHz) observation of galaxy cluster radio relics
- CRESCENDO: An on-the-fly Fokker-Planck Solver for Spectral Cosmic Rays in Cosmological Simulations
- Simulations of cosmic rays in large-scale structures: numerical and physical effects
- Evidence for a pressure discontinuity at the position of the Coma relic from Planck Sunyaev-Zel'dovich effect data
- A Massive Cluster at z = 0.288 Caught in the Process of Formation: The Case of Abell 959
- Geometrical on-the-fly shock detection in SPH
- Suzaku X-ray Observations of the Nearest Non-Cool Core Cluster, Antlia: Dynamically Young but with Remarkably Relaxed Outskirts
- Gamma-ray and Neutrino Emissions due to Cosmic-Ray Protons Accelerated at Intracluster Shocks in Galaxy Clusters
- Exploring diffuse radio emission in galaxy clusters and groups with the uGMRT and the SKA
- Entropy at the Outskirts of Galaxy Clusters as Implications for Cosmological Cosmic-Ray Acceleration
- Heating and enriching the intracluster medium
- The evolution of cosmic ray electrons in the cosmic web: seeding by AGN, star formation and shocks
- A formation mechanism for "Wrong Way" Radio Relics
- Radio emission from weak spherical shocks in the outskirts of galaxy clusters
- Approximate Riemann Solvers for the Cosmic Ray Magnetohydrodynamical Equations
- Complex diffuse emission in the cluster PLCK~G004.5-19.5
- Radio Observations as a Probe of Cosmic Web Magnetism
- Gamma-ray emission from galaxy cluster outskirts versus radio relics
- Modelling Giant Radio Halos