The unusually weak and exceptionally steep radio relic in Abell 2108
arXiv:2111.09225 · doi:10.3847/1538-4357/ac3b5a
Abstract
Mergers between galaxy clusters often drive shocks into the intra cluster medium (ICM), the effects of which are sometimes visible via temperature and density jumps in the X-ray, and via radio emission from relativistic particles energized by the shock's passage. Abell2108 was selected as a likely merger system through comparing the X-ray luminosity to the Planck Sunyaev-Zeldovich signal, where this cluster appeared highly X-ray underluminous. Follow up observations confirmed it to be a merging low mass cluster featuring two distinct subclusters, both with a highly disturbed X-ray morphology. Giant Metrewave Radio Telescope (GMRT) data covering 120-750MHz show an extended radio feature resembling a radio relic, near the location of a temperature discontinuity in the X-rays. We measure a Mach number from the X-ray temperature jump. Several characteristics of radio relics are found in Abell2108, making this cluster one of the few low mass mergers likely hosting a radio relic. The radio spectrum is exceptionally steep, and the radio power is very weak (P1.4GHz=1E22W/Hz). To account for the shock/relic offset, we propose a scenario in which the shock created the relic by re-accelerating a cloud of pre-existing relativistic electrons and then moved away, leaving behind a fading relic. The electron aging timescale derived from the high-frequency steepening in the relic spectrum is consistent with the shock travel time to the observed X-ray discontinuity. However, the lower flux in GMRT band 4 data causing the steepening could be due to instrumental limitations, and deeper radio data are needed to constrain the spectral slope of the relic at high frequencies.
accepted for publication in ApJ; 15 pages, 6 figures
References in corpus (20)
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- Diffuse Radio Emission from Galaxy Clusters
- Scaling Properties of a Complete X-ray Selected Galaxy Group Sample
- Radio signature of cosmological structure formation shocks
- The Case for Electron Re-Acceleration at Galaxy Cluster Shocks
- Shock acceleration as origin of the radio relic in A521?
- Feedback from Active Galactic Nuclei in Galaxy Groups
- A new double radio relic in PSZ1 G096.89+24.17 and a radio relic mass-luminosity relation
- Scaling Properties of Galaxy Groups
- Deep LOFAR observations of the merging galaxy cluster CIZA J2242.8+5301
- RASS-SDSS Galaxy Cluster Survey. V. The X-ray-Underluminous Abell Clusters
- HICOSMO - Cosmology with a complete sample of galaxy clusters: I. Data analysis, sample selection and luminosity-mass scaling-relation
- Discovering the most elusive radio relic in the sky: Diffuse Shock Acceleration caught in the act?
- The Group Evolution Multiwavelength Study (GEMS): the Sample and Datasets
- The bow shock, cold fronts and disintegrating cool core in the merging galaxy group RXJ0751.3+5012
- Discovery of a radio relic in the low mass, merging galaxy cluster PLCK G200.9-28.2
- Building a cluster: shocks, cavities, and cooling filaments in the group-group merger NGC 6338
- Deep Chandra Observations of HCG 16 - II. The Development of the Intra-group Medium in a Spiral-Rich Group
- Diffuse Radio Emission in Abell 754
- Low-scatter galaxy cluster mass proxies for the eROSITA all-sky survey
Cited by in corpus (9)
- CHEX-MATE: Constraining the origin of the scatter in galaxy cluster radial X-ray surface brightness profiles
- Radio continuum tails in ram pressure-stripped spiral galaxies: experimenting with a semi-empirical model in Abell 2255
- Real-time RFI Filtering for uGMRT: Overview of the Released System and Relevance to the SKA
- The prototypical major cluster merger Abell 754. I. Calibration of MeerKAT data and radio/X-ray spectral mapping of the cluster
- Exploring diffuse radio emission in galaxy clusters and groups with the uGMRT and the SKA
- A new enigmatic radio relic in the low mass cluster Abell 2108
- Feedback in the merging galaxy group NGC6338
- An X-ray-Emitting Proto-Cluster at Reveals Rapid Structure Growth
- Relativistic ions with power-law spectra explain radio phoenixes