The effect of magnetic fields on properties of the circumgalactic medium
Freeke van de Voort (1, 2), Rebekka Bieri (2), R\"udiger Pakmor, (2), Facundo A. G\'omez (3), Robert J. J. Grand (2), Federico Marinacci (4), ((1) Cardiff, (2) MPA, (3) La Serena, (4) Bologna)

TL;DR
This study uses cosmological simulations to demonstrate that magnetic fields significantly influence the properties and gas dynamics of the circumgalactic medium, affecting galaxy evolution and metal distribution.
Contribution
It is the first to systematically analyze the impact of magnetic fields on the CGM across different galaxy formation models with high-resolution simulations.
Findings
Magnetic fields increase halo gas density and metallicity.
Magnetic fields slow gas flows and reduce outflow escape.
Magnetic fields cause less metal mixing and more metal-poor halo gas.
Abstract
We study the effect of magnetic fields on a simulated galaxy and its surrounding gaseous halo, or circumgalactic medium (CGM), within cosmological 'zoom-in' simulations of a Milky Way-mass galaxy as part of the 'Simulating the Universe with Refined Galaxy Environments' (SURGE) project. We use three different galaxy formation models, each with and without magnetic fields, and include additional spatial refinement in the CGM to improve its resolution. The central galaxy's star formation rate and stellar mass are not strongly affected by the presence of magnetic fields, but the galaxy is more disc-dominated and its central black hole is more massive when . The physical properties of the CGM change significantly. With magnetic fields, the circumgalactic gas flows are slower, the atomic hydrogen-dominated extended discs around the galaxy are more massive and the densities in the inner…
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