Deep insights into Abell 2163: unveiling the treasure trove of ICM plasma physics
Ramananda Santra (1,2), Ruta Kale (1), Simona Giacintucci (3), Herve Bourdin (4,5), Rashi Jain (1), Andrea Botteon (2), Gianfranco Brunetti (2) ((1) National Centre for Radio Astrophysics, Tata Institute of Fundamental Research, Pune, India, (2) INAF - IRA, Bologna

TL;DR
This study provides a detailed analysis of the radio halo in galaxy cluster Abell 2163, revealing complex ICM physics, spectral index variations, and magnetic field relations through combined radio and X-ray observations.
Contribution
First detailed radio and X-ray analysis of Abell 2163's halo, mapping emission to large extents and revealing spectral and magnetic field insights.
Findings
Radio halo extends up to ~3.3 Mpc, mapped with uGMRT.
Spectral index shows radial steepening and fluctuations.
Radio and X-ray brightness are correlated, with varying slopes.
Abstract
Nonthermal emission observed in galaxy clusters provides a direct probe into the plasma physics of the intra-cluster medium (ICM) under extreme conditions. We report the first detailed analysis of the giant radio halo in the merging galaxy cluster Abell 2163, using upgraded Giant Metrewave Radio Telescope (uGMRT) and Very Large Array (VLA) observations. Combining radio data (300-1400 MHz) with archival X-ray data offers a unique opportunity to study the complex ICM physics of the cluster. The sensitive uGMRT observations map the halo emission for the first time out to an extent of ~3.3 Mpc, up to , and also effectively recover other diffuse sources. The radio surface brightness profile is well fitted with an exponential function up to r, with an evolution of e-folding radius over frequencies (larger at low frequencies). The spatially resolved spectral index map reveals…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Space Technology and Applications
