A spatially-resolved spectral analysis of giant radio galaxies with MeerKAT
K.K.L. Charlton, J. Delhaize, K. Thorat, I. Heywood, M. J. Jarvis, M., J. Hardcastle, Fangxia An, I. Delvecchio, C. L. Hale, I. H. Whittam, M., Br\"uggen, L. Marchetti, L. Morabito, Z. Randriamanakoto, S. V. White, A.R., Taylor

TL;DR
This study uses MeerKAT radio observations to analyze the spectral properties and ages of three giant radio galaxies, revealing discrepancies between spectral and dynamical age estimates and highlighting the complexity of their evolution.
Contribution
First spatially resolved spectral analysis of three giant radio galaxies with MeerKAT, including the first report of a GRG in a cluster environment, and comparison of spectral and dynamical ages.
Findings
Spectral ages range from 47 to 68 Myr.
Significant discrepancies between spectral and dynamical ages.
First detection of a GRG in a cluster environment.
Abstract
In this study we report spatially resolved, wideband spectral properties of three giant radio galaxies (GRGs) in the COSMOS field: MGTC J095959.63+024608.6 , MGTC J100016.84+015133.0 and MGTC J100022.85+031520.4. One such galaxy MGTC J100022.85+031520.4 is reported here for the first time with a projected linear size of 1.29 Mpc at a redshift of 0.1034. Unlike the other two, it is associated with a brightest cluster galaxy (BCG), making it one of the few GRGs known to inhabit cluster environments. We examine the spectral age distributions of the three GRGs using new MeerKAT UHF-band (544-1088 MHz) observations, and -band (900-1670 MHz) data from the MeerKAT International GHz Tiered Extragalactic Exploration (MIGHTEE) survey. We test two different models of spectral ageing, the Jaffe-Perola and Tribble models, using the Broadband Radio Astronomy Tools (\textsc{brats}) software which…
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Taxonomy
TopicsRadio Astronomy Observations and Technology · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
