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The diverse nature of spiral arms in the Auriga Superstars cosmological hydrodynamic simulations

Grand, Robert J. J., Fragkoudi, Francesca, Pakmor, Rüdiger, Gómez, Facundo A., van de Voort, Freeke ORCID: https://orcid.org/0000-0002-6301-638X, Bieri, Rebekka and Townson, Sophie 2026. The diverse nature of spiral arms in the Auriga Superstars cosmological hydrodynamic simulations. Monthly Notices of the Royal Astronomical Society 548 (4) , stag774. 10.1093/mnras/stag774

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License Start date: 23 April 2026

Abstract

The dynamical nature and formation mechanism(s) of galactic spiral arms remain long-standing problems in astrophysics. Most theoretical work is based on analytic calculations or idealised simulations, which has yielded several theories of spiral structure. The radial profile of the spiral arm rotation speed - the pattern speed - is a key observable prediction of these theories. However, observations that infer spiral pattern speeds reveal a mixed picture with no clear consensus. Here, we expand on theoretical efforts by examining the pattern speed profiles in the auriga Superstars set of high-resolution cosmological magnetohydrodynamic simulatons of Milky Way-mass spiral disc galaxies. These simulations combine galaxy formation in a cosmological environment with the high dynamical fidelity afforded by an ∼800 $\rm M_{\odot }$ star particle resolution, giving ∼100 million star particles in the disc. We show that several different spiral arm theories are realised among our simulations, including large-scale kinematic density waves, manifold spirals, dynamic (co-rotating) spirals, and overlapping modes. In particular, we demonstrate that a strong tidal interaction leads to clear kinematic density waves, and that manifold spirals are present in a strongly-barred galaxy. Interestingly, we find that the same galaxy may show qualitative evolution of their spiral pattern speed profiles, indicating that the nature of spiral arms can evolve on potentially sub-Gigayear timescales. Our results demonstrate that in the absence of a strong external encounter or a strong bar, galactic spiral structure is highly transitional and complex with no clear long-lived underlying wave.

Item Type: Article
Date Type: Publication
Status: Published
Schools: Schools > Physics and Astronomy
Additional Information: License information from Publisher: LICENSE 1: URL: https://creativecommons.org/licenses/by/4.0/, Start Date: 2026-04-23
Publisher: Oxford University Press
ISSN: 0035-8711
Date of First Compliant Deposit: 7 May 2026
Date of Acceptance: 21 April 2026
Last Modified: 02 Jun 2026 13:00
URI: https://orca.cardiff.ac.uk/id/eprint/186852

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