The impact of the SZ effect on cm-wavelength (1-30 GHz) observation of galaxy cluster radio relics
arXiv:1511.03245 · doi:10.1051/0004-6361/201527726
Abstract
(Abridged) Radio relics in galaxy clusters are believed to be associated with powerful shock fronts that originate during cluster mergers, and are a testbed for the acceleration of relativistic particles in the intracluster medium. Recently, radio relic observations have pushed into the cm-wavelength domain (1-30 GHz) where a break from the standard synchrotron power-law spectrum has been found, most noticeably in the famous 'Sausage' relic. In this paper, we point to an important effect that has been ignored or considered insignificant while interpreting these new high-frequency radio data, namely the contamination due to the Sunyaev-Zel'dovich (SZ) effect that changes the observed synchrotron flux. Even though the radio relics reside in the cluster outskirts, the shock-driven pressure boost increases the SZ signal locally by roughly an order of magnitude. The resulting flux contamination for some well-known relics are non-negligible already at 10 GHz, and at 30 GHz the observed synchrotron fluxes can be diminished by a factor of several from their true values. Interferometric observations are not immune to this contamination, since the change in the SZ signal occurs roughly at the same length scale as the synchrotron emission, although there the flux loss is less severe than single-dish observations. We present a simple analytical approximation for the synchrotron-to-SZ flux ratio, based on a theoretical radio relic model that connects the non-thermal emission to the thermal gas properties, and show that by measuring this ratio one can potentially estimate the relic magnetic fields or the particle acceleration efficiency.
Updated to the accepted version. Includes major text modifications and a correction to the numerical coefficient in Eq. 15. Results and conclusions are unchanged
References in corpus (21)
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- Detecting shock waves in cosmological smoothed particle hydrodynamics simulations
- Radio signature of cosmological structure formation shocks
- 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
- Deep 1.4 GHz VLA Observations of the Radio Halo and Relic in Abell 2256
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- 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
- Shock Waves and Cosmic Ray Acceleration in the Outskirts of Galaxy Clusters
- The widest-frequency radio relic spectra: observations from 150 MHz to 30 GHz
- Non-Equilibrium Electrons and the Sunyaev-Zel'dovich Effect of Galaxy Clusters
- Equilibration processes in the Warm-Hot Intergalactic Medium
- The radio relic in Abell 2256: overall spectrum and implications for electron acceleration
- The highest-frequency detection of a radio relic: 16-GHz AMI observations of the `Sausage' cluster
- MC^2: Mapping the Dark Matter Distribution of the "Toothbrush" Cluster RX J0603.3+4214 with Hubble Space Telescope and Subaru Weak-lensing
- Injection of -like Suprathermal Particles into Diffusive Shock Acceleration
- A distant radio mini-halo in the Phoenix galaxy cluster
- XMM-Newton observations of the Coma cluster relic 1253+275
- Evidence for a pressure discontinuity at the position of the Coma relic from Planck Sunyaev-Zel'dovich effect data
- Glimm-Godunov's Method for Cosmic-ray-hydrodynamics
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- Diffuse Radio Emission from Galaxy Clusters
- Deep VLA observations of the cluster 1RXS J0603.3+4214 in the frequency range 1-2 GHz
- Deep Very Large Array observations of the merging cluster CIZA J2242.8+5301: continuum and spectral imaging
- Relics in galaxy clusters at high radio frequencies
- New mysteries and challenges from the Toothbrush relic: wideband observations from 550 MHz to 8 GHz
- Can cluster merger shocks reproduce the luminosity and shape distribution of radio relics?
- Magnetic Field Evolution in Giant Radio Relics using the example of CIZA J2242.8+5301
- ALMA-SZ Detection of a Galaxy Cluster Merger Shock at Half the Age of the Universe
- Observations of a Pre-Merger Shock in Colliding Clusters of Galaxies
- Shock Acceleration Model for the Toothbrush Radio Relic
- Observations of the galaxy cluster CIZA J2242.8+5301 with the Sardinia Radio Telescope
- Downstream depolarization in the Sausage relic: a 1-4 GHz Very Large Array study
- A perfect power-law spectrum even at highest frequencies: The Toothbrush relic
- Tempestuous life beyond R500: X-ray view on the Coma cluster with SRG/eROSITA. II. Shock & Relic
- Shocks and Tides Quantified in the "Sausage" Cluster, CIZA J2242.8+5301, using N-body/hydro-dynamical Simulations
- Discovery of a radio relic in the low mass, merging galaxy cluster PLCK G200.9-28.2
- Spectro-polarimetric observations of the CIZA J2242.8+5301 northern radio relic: no evidence of high-frequency steepening
- Simulations of the Galaxy Cluster CIZA J2242.8+5301 I: Thermal Model and Shock Properties
- Multi-Phenomena Modeling of the New Bullet Cluster, ZwCl008.8+52, using N-body/hydrodynamical Simulations
- High-resolution, High-sensitivity, Low-frequency uGMRT View of Coma Cluster of Galaxies
- Shock Acceleration Model with Postshock Turbulence for Giant Radio Relics
- Radio halos and relics from extended cosmic-ray ion distributions with strong diffusion in galaxy clusters
- Sardinia Radio Telescope observations of the Coma Cluster
- An upper limit calculator (UL-CALC) for undetected extended sources with radio interferometers: radio halo upper limits
- Acceleration of cosmic rays by double shock waves in galaxy clusters: application to radio relics
- High frequency radio imaging of 3CR 403.1 with the Sardinia Radio Telescope