To investigate the relationship between thermal and non-thermal components in merger galaxy clusters, we present deep JVLA and Chandra observations of the HST Frontier Fields cluster MACS J0717.5+3745. The Chandra image shows a complex merger event, with at least four components belonging to different merging subclusters. Northwest of the cluster, ∼0.7 Mpc from the center, there is a ram-pressure-stripped core that appears to have traversed the densest parts of the cluster after entering the intracluster medium (ICM) from the direction of a galaxy filament to the southeast. We detect a density discontinuity north-northeast of this core, which we speculate is associated with a cold front. Our radio images reveal new details for the complex r...
Aims. To study at multiple frequencies the radio emission arising from the massive galaxy cluster MA...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
We report the discovery of large-scale diffuse radio emission in the galaxy cluster MACS J1752.0+444...
To investigate the relationship between thermal and non-thermal components in merger galaxy clusters...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
We present the results of deep Chandra observations of ZwCl 2341+0000, which is a merging galaxy clu...
Context. Mergers of galaxy clusters are among the most energetic events in the Universe. These event...
Context. Mergers of galaxy clusters are among the most energetic events in the Universe. These event...
We report on high-resolution JVLA and Chandra observations of the Hubble Space Telescope (HST) Front...
Open AccessAims. To investigate the nonthermal emission mechanism and their interaction during clust...
International audienceTo investigate the nonthermal emission mechanism and their interaction during ...
The Hubble Space Telescope Frontier Fields cluster MACS J1149.6+2223 is one of the most complex merg...
Aims. To study at multiple frequencies the radio emission arising from the massive galaxy cluster MA...
International audienceWe present a comprehensive multiwavelength analysis of the merging galaxy clus...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
Aims. To study at multiple frequencies the radio emission arising from the massive galaxy cluster MA...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
We report the discovery of large-scale diffuse radio emission in the galaxy cluster MACS J1752.0+444...
To investigate the relationship between thermal and non-thermal components in merger galaxy clusters...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
We present the results of deep Chandra observations of ZwCl 2341+0000, which is a merging galaxy clu...
Context. Mergers of galaxy clusters are among the most energetic events in the Universe. These event...
Context. Mergers of galaxy clusters are among the most energetic events in the Universe. These event...
We report on high-resolution JVLA and Chandra observations of the Hubble Space Telescope (HST) Front...
Open AccessAims. To investigate the nonthermal emission mechanism and their interaction during clust...
International audienceTo investigate the nonthermal emission mechanism and their interaction during ...
The Hubble Space Telescope Frontier Fields cluster MACS J1149.6+2223 is one of the most complex merg...
Aims. To study at multiple frequencies the radio emission arising from the massive galaxy cluster MA...
International audienceWe present a comprehensive multiwavelength analysis of the merging galaxy clus...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
Aims. To study at multiple frequencies the radio emission arising from the massive galaxy cluster MA...
Merging galaxy clusters leave long-lasting signatures on the baryonic and non-baryonic cluster const...
We report the discovery of large-scale diffuse radio emission in the galaxy cluster MACS J1752.0+444...