Statistics of Giant Radio Halos from Electron Reacceleration Models
arXiv:astro-ph/0604103 · doi:10.1111/j.1365-2966.2006.10423.x
Abstract
The most important evidence of non-thermal phenomena in galaxy clusters comes from Giant Radio Halos (GRHs), synchrotron radio sources extended over Mpc scales, detected in a growing number of massive galaxy clusters. A promising possibility to explain these sources is given by "in situ" stochastic reacceleration of relativistic electrons by turbulence generated in the cluster volume during merger events. Cassano & Brunetti (2005) have recently shown that the expected fraction of clusters with GRHs and the increase of such a fraction with cluster mass can be reconciled with present observations provided that a fraction of 20-30 % of the turbulence in clusters is in the form of compressible modes. In this work we extend these calculations by including a scaling of the magnetic field strength with cluster mass. We show that the observed correlations between the synchrotron radio power of a sample of 17 GRHs and the X-ray properties of the hosting clusters are consistent with, and actually predicted by a magnetic field dependence on the virial mass of the form B \propto M^b, with b>0.5 and typical micro Gauss strengths of the average B intensity. The occurrence of GRHs as a function of both cluster mass and redshift is obtained. The most relevant findings are that the predicted luminosity functions of GRHs are peaked around a power P_{1.4 GHz} 10^{24} W/Hz, and severely cut-off at low radio powers due to the decrease of the electron reacceleration in smaller galaxy clusters. We expect a total number of GRHs to be discovered at ~mJy radio fluxes of ~100 at 1.4 GHz. Finally, the occurrence of GRHs and their number counts at 150 MHz are estimated in view of the fortcoming operation of low frequency observatories (LOFAR, LWA) and compared with those at higher radio frequencies.
21 pages, 17 figures, accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (56)
- The LOFAR Two-metre Sky Survey - I. Survey Description and Preliminary Data Release
- Diffuse Radio Emission from Galaxy Clusters
- Observations of extended radio emission in clusters
- A low-frequency radio halo associated with a cluster of galaxies
- GMRT Radio Halo Survey in galaxy clusters at z = 0.2 -- 0.4. II.The eBCS clusters and analysis of the complete sample
- GMRT Radio Halo Survey in galaxy clusters at z = 0.2 -- 0.4 I.The REFLEX sub--sample
- Simulating cosmic rays in clusters of galaxies - II. A unified scheme for radio halos and relics with predictions of the gamma-ray emission
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- Shock acceleration as origin of the radio relic in A521?
- Science with a lunar low-frequency array: from the dark ages of the Universe to nearby exoplanets
- Turbulence and Particle Acceleration in Giant Radio Haloes: the Origin of Seed Electrons
- New scaling relations in cluster radio halos and the re-acceleration model
- The Extended GMRT Radio Halo Survey II: Further results and analysis of the full sample
- The Planck clusters in the LOFAR sky. I. LoTSS-DR2: new detections and sample overview
- Gamma rays from clusters of galaxies
- De-contamination of cosmological 21-cm maps
- Simulating cosmic rays in clusters of galaxies - III. Non-thermal scaling relations and comparison to observations
- LOFAR discovery of an ultra-steep radio halo and giant head-tail radio galaxy in Abell 1132
- Dissecting nonthermal emission in the complex multiple-merger galaxy cluster Abell 2744: Radio and X-ray analysis
- Revised statistics of radio halos and the re-acceleration model
- The ultra-steep diffuse radio emission observed in the cool-core cluster RX J1720.1+2638 with LOFAR at 54 MHz
- A morphological comparison between giant radio halos and radio mini--halos in galaxy clusters
- The Planck clusters in the LOFAR sky: IV: LoTSS-DR2: statistics of radio halos and re-acceleration models
- New giant radio sources and underluminous radio halos in two galaxy clusters
- The LOFAR and JVLA view of the distant steep spectrum radio halo in MACS J1149.5+2223
- Cosmic Magnetism in Centimeter and Meter Wavelength Radio Astronomy
- Can giant radio halos probe the merging rate of galaxy clusters?
- The detection of cluster magnetic fields via radio source depolarisation
- Abell 1033: Radio halo and gently reenergized tail at 54 MHz
- Deep low-frequency radio observations of Abell 2256 II: The ultra-steep spectrum radio halo
- A 3.5 Mpc-long radio relic in the galaxy cluster ClG 0217+70
- ATCA observations of the MACS-Planck Radio Halo Cluster Project - I. New detection of a radio halo in PLCK G285.0-23.7
- A three-component giant radio halo: the puzzling case of the galaxy cluster Abell 2142
- A study of diffuse radio sources and X-ray emission in six massive clusters
- Diffuse Radio Emission from Galaxy Clusters in the LOFAR Two-metre Sky Survey Deep Fields
- MERGHERS Pilot: MeerKAT discovery of diffuse emission in nine massive Sunyaev-Zel'dovich-selected galaxy clusters from ACT
- A study of halo and relic radio emission in merging clusters using the Murchison Widefield Array
- A Massive Cluster at z = 0.288 Caught in the Process of Formation: The Case of Abell 959
- Optical analysis of the poor clusters Abell 610, Abell 725, and Abell 796, containing diffuse radio sources
- Particle re-acceleration and diffuse radio sources in the galaxy cluster Abell 1550
- Discovery of a radio halo (and relic) in a M cluster
- Internal dynamics of the galaxy cluster Abell 959
- Signatures from a merging galaxy cluster and its AGN population: LOFAR observations of Abell 1682
- The First Weak-lensing Analysis with the James Webb Space Telescope: SMACS J0723.3-7327
- LOFAR Detection of a Low-Power Radio Halo in the Galaxy Cluster Abell 990
- The diffuse radio emission in the high-redshift cluster PSZ2 G091.83+26.11: total intensity and polarisation analysis with Very Large Array 1-4 GHz observations
- The structure of Abell 1351: a bimodal galaxy cluster with peculiar diffuse radio emission
- Clusters of galaxies and the cosmic web with SKA
- Probing particle acceleration in Abell 2256: from to 16 MHz to gamma rays
- Complex diffuse emission in the cluster PLCK~G004.5-19.5
- CHEX-MATE: New detections and properties of the radio diffuse emission in massive clusters with MeerKAT
- Radio halos in a mass-selected sample of 75 galaxy clusters. I. Sample selection and data analysis
- Combined LOFAR-uGMRT analysis of the diffuse radio emission in the massive clusters Abell 773 and Abell 1351
- A deep study of A399-401: An application for wide-field facet calibration
- A LOFAR-uGMRT spectral index study of distant radio halos
- The MeerKAT Massive Distant Clusters Survey: a search for diffuse radio emission in 30 massive SZ-selected clusters at