Dissecting nonthermal emission in the complex multiple-merger galaxy cluster Abell 2744: Radio and X-ray analysis
K. Rajpurohit, F. Vazza, R. J. van Weeren, M. Hoeft, M. Brienza, E., Bonnassieux, C. J. Riseley, G. Brunetti, A. Bonafede, M. Br\"uggen, W. R., Formann, A. S. Rajpurohit, H. J. A. R\"ottgering, A. Drabent, P., Dom\'inguez-Fern\'andez, D. Wittor, and F. Andrade-Santos

TL;DR
This study uses deep low-frequency radio and X-ray observations to analyze the complex nonthermal emission in galaxy cluster Abell 2744, revealing diverse spectral properties and supporting a multiple merger scenario.
Contribution
First detailed low-frequency radio analysis of Abell 2744 combining radio and X-ray data, revealing complex nonthermal components and their relation to cluster dynamics.
Findings
Halo spectrum follows a power-law between 150 MHz and 3 GHz
Different spectral indices observed in halo subregions
Relics exhibit power-law spectra consistent with shock acceleration
Abstract
We present the first deep low frequency radio observations of the massive and highly disturbed galaxy cluster Abell 2744 using the upgraded Giant Metrewave Radio Telescope (uGMRT). The cluster is experiencing a very complex multiple merger and hosts a giant halo and four radio relics. The uGMRT observations, together with existing VLA and Chandra observations, allow us to study the complexity of the physical mechanisms active in this system. Our new images reveal that the central halo emission is more extended toward low frequencies. We find that the integrated spectrum of the halo follows a power-law between 150 MHz and 3 GHz, while its subregions show significantly different spectra, also featuring high frequency spectral steepening. The halo also shows local regions in which the spectral index is significantly different from the average value. Our results highlight that an overall…
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