Exploring the magnetized cosmic web through low frequency radio emission
arXiv:0806.3272 · doi:10.1111/j.1365-2966.2008.14136.x
Abstract
Recent improvements in the capabilities of low frequency radio telescopes provide a unique opportunity to study thermal and non-thermal properties of the cosmic web. We argue that the diffuse, polarized emission from giant radio relics traces structure formation shock waves and illuminates the large-scale magnetic field. To show this, we model the population of shock-accelerated relativistic electrons in high-resolution cosmological simulations of galaxy clusters and calculate the resulting radio synchrotron emission. We find that individual shock waves correspond to localized peaks in the radio surface brightness map which enables us to measure Mach numbers for these shocks. We show that the luminosities and number counts of the relics strongly depend on the magnetic field properties, the cluster mass and dynamical state. By suitably combining different cluster data, including Faraday rotation measures, we are able to constrain some macroscopic parameters of the plasma at the structure formation shocks, such as models of turbulence. We also predict upper limits for the properties of the warm-hot intergalactic medium, such as its temperature and density. We predict that the current generation of radio telescopes (LOFAR, GMRT, MWA, LWA) have the potential to discover a substantially larger sample of radio relics, with multiple relics expected for each violently merging cluster. Future experiments (SKA) should enable us to further probe the macroscopic parameters of plasma physics in clusters.
18 pages, 13 figures, accepted to MNRAS Oct 23 2008, minor changes, full resolution version available at http://www.astro.utoronto.ca/~battaglia/Publications/
References in corpus (20)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- Observations of extended radio emission in clusters
- Detecting shock waves in cosmological smoothed particle hydrodynamics simulations
- Cosmic ray feedback in hydrodynamical simulations of galaxy formation
- Giant Ringlike Radio Structures Around Galaxy Cluster Abell 3376
- Turbulence, magnetic fields and plasma physics in clusters of galaxies
- Simulating cosmic rays in clusters of galaxies - II. A unified scheme for radio halos and relics with predictions of the gamma-ray emission
- The intracluster magnetic field power spectrum in Abell 2255
- Shock acceleration as origin of the radio relic in A521?
- Simulating cosmic rays in clusters of galaxies - I. Effects on the Sunyaev-Zel'dovich effect and the X-ray emission
- The intracluster magnetic field power spectrum in Abell 2382
- Nonlinear Diffusive Shock Acceleration with Magnetic Field Amplification
- Cosmic ray physics in calculations of cosmological structure formation
- Simulations of cosmic ray feedback by AGN in galaxy clusters
- Cosmological MHD simulation of a cooling flow cluster
- Simulating cosmic rays in clusters of galaxies - III. Non-thermal scaling relations and comparison to observations
- Angular Anisotropies in the Cosmic Gamma-ray Background as a Probe of its Origin
- Fields and Filaments in the Core of the Centaurus Cluster
- Detection of diffuse radio emission at large distance from the center of the galaxy cluster A2255
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- Cosmic ray transport in galaxy clusters: implications for radio halos, gamma-ray signatures, and cool core heating
- Giant radio relics in galaxy clusters: reacceleration of fossil relativistic electrons?
- Discovery of radio halos and double-relics in distant MACS galaxy clusters: clues to the efficiency of particle acceleration
- The "toothbrush-relic": evidence for a coherent linear 2-Mpc scale shock wave in a massive merging galaxy cluster?
- Can slow roll inflation induce relevant helical magnetic fields?
- Cosmological MHD Simulations of Galaxy Cluster Radio Relics: Insights and Warnings for Observations
- Comparative analysis of the diffuse radio emission in the galaxy clusters A1835, A2029, and Ophiuchus
- Magnetic Fields, Relativistic Particles, and Shock Waves in Cluster Outskirts
- Constraints on Cosmic Rays, Magnetic Fields, and Dark Matter from Gamma-Ray Observations of the Coma Cluster of Galaxies with VERITAS and Fermi
- Using double radio relics to constrain galaxy cluster mergers: A model of double radio relics in CIZA J2242.8+5301
- A Comparison of Cosmological Codes: Properties of Thermal Gas and Shock Waves in Large Scale Structures
- Detecting the orientation of magnetic fields in galaxy clusters
- Shock finding on a moving-mesh: I. Shock statistics in non-radiative cosmological simulations
- Magnetic power spectra from Faraday rotation maps - REALMAF and its use on Hydra A
- Galaxy Cluster Radio Relics in Adaptive Mesh Refinement Cosmological Simulations: Relic Properties and Scaling Relationships
- A double radio relic in the merging galaxy cluster ZwCl 0008.8+5215
- Forecasts for the detection of the magnetised cosmic web from cosmological simulations
- A search for steep spectrum radio relics and halos with the GMRT
- How many radio relics await discovery?
- New mysteries and challenges from the Toothbrush relic: wideband observations from 550 MHz to 8 GHz
- Can the observed large scale magnetic fields be seeded by helical primordial fields?
- Magnetic field amplification by shocks in galaxy clusters: application to radio relics
- Multiple shock structures in a radio selected cluster of galaxies
- Evolution of cosmic ray electron spectra in magnetohydrodynamical simulations
- Shocks and non-thermal particles in clusters of galaxies
- Simulating the Toothbrush: Evidence for a triple merger of galaxy clusters
- Radio Galaxy NGC 1265 unveils the Accretion Shock onto the Perseus Galaxy Cluster
- The Efficiency of Magnetic Field Amplification at Shocks by Turbulence
- Diffuse steep-spectrum sources from the 74 MHz VLSS survey
- Shock finding on a moving-mesh: II. Hydrodynamic shocks in the Illustris universe
- Science with the Murchison Widefield Array: Phase I Results and Phase II Opportunities
- Radio Emission in the Cosmic Web
- Analytical model for cluster radio relics
- Cosmological shock waves: clues to the formation history of haloes
- Generation of helical magnetic fields from inflation
- Synchrotron Emission on the Largest Scales: Radio Detection of the Cosmic-Web
- Multi-wavelength mock observations of the WHIM in a simulated galaxy cluster
- Mode Spectrum of the Electromagnetic Field in Open Universe Models
- Cosmic magnetization in curved and Lorentz violating space-times