Magnetic Fields in the Shapley Supercluster Core with POSSUM: Challenging Model Predictions
D. Alonso-L\'opez, S. P. O'Sullivan, A. Bonafede, L. M. B\"oss, C. Stuardi, E. Osinga, C. S. Anderson, C. L. Van Eck, E. Carretti, J. L. West, T. Akahori, K. Dolag, S. Giacintucci, A. Khadir, Y. K. Ma, S. Malik, N. McClure-Griffiths, L. Rudnick, B. A. Seidel, S. Tiwari

TL;DR
This study uses Faraday RM data from the POSSUM survey to measure magnetic fields in the Shapley Supercluster, revealing discrepancies with models and highlighting the complexity of magnetic field amplification in cluster outskirts.
Contribution
First detailed RM analysis of the SSC region combining multiple data sources, challenging existing MHD simulation predictions of magnetic field profiles.
Findings
Detected an excess RM scatter of 30.5 rad/m^2 in the SSC region.
Estimated magnetic field strength of 1-3 μG in clusters and groups.
Observed flatter RM scatter profiles than model predictions, indicating gaps in current models.
Abstract
Faraday Rotation Measure (RM) Grids provide a sensitive means to trace magnetized plasma across a wide range of cosmic environments. We study the RM signal from the Shapley Supercluster Core (SSC), in order to constrain the magnetic field properties of the gas. The SSC region consists of two galaxy clusters A3558 and A3562, and two galaxy groups between them, at . We combine RM Grid data with thermal Sunyaev-Zeldovich effect data, obtained from the POSSUM pilot survey, and Planck, respectively. To robustly determine the gas density, its magnetic field properties, and their correlation, we study the RM scatter in the SSC region and its behavior as a function of distance to the nearest cluster/group. We compare observational results with semi-analytic Gaussian random field models and more realistic cosmological MHD simulations. With a sky-density of 36 RMs/deg, we…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Astronomy and Astrophysical Research
