The Coma cluster at LOFAR frequencies I: insights into particle acceleration mechanisms in the radio bridge
arXiv:2011.08856 · doi:10.3847/1538-4357/abcb8f
Abstract
Radio synchrotron emission from the bridges of low-density gas connecting galaxy clusters and groups is a challenge for particle acceleration processes. In this work, we analyse the Coma radio bridge using new LOw Frequency ARray (LOFAR) observations at 144 MHz. LOFAR detects the bridge and its substructures with unprecedented sensitivity and resolution. We find that the radio emission peaks on the NGC 4839 group. Towards the halo, in front of the NGC 4839 group, the radio brightness decreases and streams of radio emission connect the NGC 4839 group to the radio relic. Using X-ray observations, we find that thermal and non-thermal plasma are moderately correlated with a sub-linear scaling. We use archival radio data at 326 MHz to constrain the spectral index in the bridge, and quantify the distribution of particles and magnetic field at different frequencies. We find that the spectrum is steeper than , and that the emission could be clumpier at 326 MHz than at 144 MHz. Using cosmological simulations and a simplified approach to compute particle acceleration, we derive under which conditions turbulent acceleration of mildly relativistic electrons could generate the radio emission in the bridge. Assuming that the initial energy ratio of the seed electrons is with respect to the thermal gas, we are able to reproduce the observed luminosity. Our results suggest that the seed electrons released by radiogalaxies in the bridge and the turbulence generated by the motion of gas and galaxies are essential to produce the radio emission.
16 pages, 8 figures, accepted by the Astrophysical Journal
References in corpus (17)
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Diffuse Radio Emission from Galaxy Clusters
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- On the connection between giant radio halos and cluster mergers
- Radio interferometric gain calibration as a complex optimization problem
- A radio ridge connecting two galaxy clusters in a filament of the cosmic web
- Resolved magnetic dynamo action in the simulated intracluster medium
- Turbulence and Vorticity in Galaxy Clusters Generated by Structure Formation
- Second order Fermi reacceleration mechanisms and large scale synchrotron radio emission in intra-cluster bridges
- The beautiful mess in Abell 2255
- Dynamical evolution of magnetic fields in the intracluster medium
- Testing cosmic-ray acceleration with radio relics: a high-resolution study using MHD and tracers
- Like a spider in its web: a study of the Large Scale Structure around the Coma cluster
- An Efficient Fokker-Planck Solver and its Application to Stochastic Particle Acceleration in Galaxy Clusters
- A giant radio bridge connecting two clusters in Abell 1758
- A complete view of the outskirts of the Coma cluster
- A merger shock in Abell 1367
Cited by in corpus (11)
- The Planck clusters in the LOFAR sky. I. LoTSS-DR2: new detections and sample overview
- Radio footprints of a minor merger in the Shapley Supercluster: From supercluster down to galactic scales
- Polarized accretion shocks from the cosmic web
- Radio relics radio emission from multi-shock scenario
- High-resolution, High-sensitivity, Low-frequency uGMRT View of Coma Cluster of Galaxies
- A deep dive: Chandra observations of the NGC 4839 group falling into the Coma cluster
- Sardinia Radio Telescope observations of the Coma Cluster
- Globular Clusters in NGC 4839 Falling into Coma: Evidence for the Second Infall?
- Gamma-ray detection toward the Coma cluster with Fermi-LAT: Implications for the cosmic ray content in the hadronic scenario
- Constraining the baryon loading factor of AGN jets: implication from the gamma-ray emission of the Coma cluster
- Convolutional Deep Denoising Autoencoders for Radio Astronomical Images