What drives bar rotation? The effect of internal properties and galaxy interactions on bar pattern speeds
Alex Merrow (1), Francesca Fragkoudi (2, 3), Rob J. J. Grand (1), Marie Martig (1) ((1) Astrophysics Research Institute Liverpool John Moores University, (2) Department of Physics Durham University

TL;DR
This study uses cosmological simulations to investigate how internal properties like baryon dominance and external interactions influence the rotation speeds of galactic bars, revealing baryon dominance as the primary factor.
Contribution
It provides new insights into the relative importance of internal baryonic properties versus external interactions in determining bar pattern speeds in galaxies.
Findings
Baryon-dominated galaxies host faster, older bars.
External interactions correlate with slower bar rotation rates.
Internal baryon dominance is the main driver of bar rotation speeds.
Abstract
One of the main properties of galactic bars is their rotation (or pattern) speed, which is driven by both internal galactic properties, as well as external interactions. To assess the influence of these internal and external drivers on bar rotation in a cosmological setting, we use the Auriga suite of cosmological hydrodynamical zoom-in simulations. We calculate the bar pattern speed and the bar rotation rate - the ratio of corotation radius to bar length - at the time of bar formation and at z=0, and compare these to bar age, bar strength, baryon dominance, galaxy stellar mass, and the history of external galaxy interactions. We find that galaxies which are more baryon dominated at z=0 - and which lie above the observed stellar mass-halo mass abundance matching relation - host faster bars, while more dark matter dominated galaxies host slower bars. Baryon-dominated galaxies also form…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Space Technology and Applications
