Understanding the radio relic emission in the galaxy cluster MACS J0717.5+3745: spectral analysis
arXiv:2011.14436 · doi:10.1051/0004-6361/202039428
Abstract
Radio relics are diffuse, extended synchrotron sources that originate from shock fronts generated during cluster mergers. The massive merging galaxy cluster MACS J0717.5+3745 hosts one of the more complex relics known to date. We present upgraded Giant Metrewave Radio Telescope band 3 (300-500 MHz) and band 4 (550-850 MHz) observations. These new observations, combined with published VLA and the new LOFAR HBA data, allow us to carry out a detailed, high spatial resolution spectral analysis of the relic over a broad range of frequencies. The integrated spectrum of the relic closely follows a power-law between 144 MHz and 5.5 GHz with a mean spectral slope . Despite its complex morphology, the subregions of the relic and the other isolated filaments also follow power-law behaviors, and show similar spectral slopes. Assuming Diffusive Shock Acceleration, we estimate a dominant Mach number of for the shocks that make up the relic. Comparison with recent numerical simulations suggests that in the case of radio relics, the slopes of the integrated radio spectra are determined by the Mach number of the accelerating shock, with nearly constant, namely between and , for Mach numbers . The spectral shapes inferred from spatially resolved regions show curvature, we speculate that the relic is inclined along the line-of-sight. The locus of points in the simulated color-color plots changes significantly with the relic viewing angle. We conclude that projection effects and inhomogeneities in the shock Mach number dominate the observed spectral properties of the relic in this complex system. Based on the new observations we raise the possibility that the relic and a narrow-angle-tailed radio galaxy are two different structures projected along the same line-of-sight.
14 pages, 12 figures
References in corpus (23)
- The LOFAR Two-metre Sky Survey - I. Survey Description and Preliminary Data Release
- Diffuse Radio Emission from Galaxy Clusters
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- On the connection between giant radio halos and cluster mergers
- A complete sample of twelve very X-ray luminous galaxy clusters at z>0.5
- The LOFAR Two Meter Sky Survey: Deep Fields, I -- Direction-dependent calibration and imaging
- Radio signature of cosmological structure formation shocks
- Radio interferometric gain calibration as a complex optimization problem
- The Case for Electron Re-Acceleration at Galaxy Cluster Shocks
- Shock acceleration as origin of the radio relic in A521?
- Non-linear Kalman filters for calibration in radio interferometry
- Deep VLA observations of the cluster 1RXS J0603.3+4214 in the frequency range 1-2 GHz
- A shock in `El Gordo' cluster and the origin of the radio relic
- Dynamical evolution of magnetic fields in the intracluster medium
- Wideband VLA Observations of Abell 2256 I: Continuum, Rotation Measure and Spectral Imaging
- Chandra and JVLA observations of HST Frontier Fields cluster MACS J0717.5+3745
- New mysteries and challenges from the Toothbrush relic: wideband observations from 550 MHz to 8 GHz
- Morphology of radio relics I: What causes the substructure of synchrotron emission?
- Polarisation of Radio Relics in Galaxy Clusters
- Physical insights from the spectrum of the radio halo in MACS J0717.5+3745
- Discovering the most elusive radio relic in the sky: Diffuse Shock Acceleration caught in the act?
- A perfect power-law spectrum even at highest frequencies: The Toothbrush relic
Cited by in corpus (23)
- Exploring the spectral properties of radio relics I: Integrated spectral index and Mach number
- Physical insights from the spectrum of the radio halo in MACS J0717.5+3745
- Deep low-frequency radio observations of Abell 2256 I: The filamentary radio relic
- Turbulent magnetic fields in the merging galaxy cluster MACS J0717.5+3745: polarization analysis
- Radio relics radio emission from multi-shock scenario
- Morphology of radio relics II: Properties of polarised emission
- The role of baryons in self-interacting dark matter mergers
- The VLA Frontier Fields Survey: Deep, High-resolution Radio Imaging of the MACS Lensing Clusters at 3 and 6 GHz
- Multiwavelength view of SPT-CL J2106-5844. The radio galaxies and the thermal and relativistic plasmas in a massive galaxy cluster merger at z~1.13
- 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
- Non-thermal filaments and AGN recurrent activity in the galaxy group Nest200047: a LOFAR, uGMRT, MeerKAT, VLA radio spectral analysis
- Sardinia Radio Telescope observations of the Coma Cluster
- CHANG-ES XXXII: Spatially Resolved Thermal/Nonthermal Separation from Radio Data Alone -- New Probes into NGC 3044 and NGC 5775
- The MeerKAT Massive Distant Clusters Survey: A Radio Halo in a Massive Galaxy Cluster at z = 1.23
- PITSZI: Probing Intra-cluster medium Turbulence with Sunyaev-Zel'dovich Imaging -- Application to the triple merging cluster MACS J0717.5+3745
- Spectral study of the diffuse synchrotron source in the galaxy cluster Abell 523
- MeerKAT discovery of GHz radio emission extending from Abell 3017 toward Abell 3016
- Relighting the fire in Hickson Compact Group (HCG) 15: magnetised fossil plasma revealed by the SKA Pathfinders & Precursors
- Star Formation, Nebulae, and Active Galactic Nuclei in CLASH Brightest Cluster Galaxies. I. Dependence on Core Entropy of Intracluster Medium
- The LOFAR sub-arcsecond view of the high-redshift radio relic in PSZ2G091.83+26.11
- Low-frequency integrated radio spectra of diffuse, steep-spectrum sources in galaxy clusters: palaeontology with the MWA and ASKAP
- Spectral analysis of spatially-resolved 3C295 (sub-arcsecond resolution) with the International LOFAR Telescope
- A high-resolution study of the double radio relic system in MACS J1752.0+4440