Pith. sign in

REVIEW 3 cited by

Introducing the Rhea simulations of Milky-Way-like galaxies I: Effect of gravitational potential on morphology and star formation

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 2502.02646 v1 pith:O3FXGKHM submitted 2025-02-04 astro-ph.GA

classification astro-ph.GA
keywords formationpotentialstarobservationssimulationsdetailedgalacticinfluence
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
read the original abstract

The Milky Way is a complex ecosystem, for which we can obtain detailed observations probing the physical mechanisms determining the interstellar medium. For a detailed comparison with observations, and to provide theories for missing observables, we need to model the Milky Way as closely as possible. However, details of the Galactic structure are not fully defined by observations, raising the need for more generalized models. With the Rhea simulations we present a set of Milky Way like simulations, containing detailed physics of the interstellar medium, as well as star formation and stellar feedback. We conduct two simulations that differ in the gravitational potential: one fitted to several structural details derived from observations, the other just reproducing the most basic quantities. We find little difference in the overall morphology except for the bar region, which funnels gas towards the Galactic inner region and therefore prevents quenching in the center. Despite differences with galacto-centric radius, the global star formation rate is almost identical in both setups. A spiral arm potential does not influence properties of groups of formed stars. A bar potential, however, lowers size and formation time of those groups. We therefore conclude for a spiral arm potential to have little influence on star formation in the Galaxy, except for producing long-lived spiral structures instead of transient ones. A Galactic bar potential has noticeable influence on star formation mainly within the innermost 2.5kpc.

Discussion (0). Sign in to comment.

Forward citations

Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Rhea-RT: Dynamical impact of Central Molecular Zone conditions on the properties of the interstellar medium and stellar feedback coupling

    astro-ph.GA 2025-12 conditional novelty 7.0 of 10

    In the CMZ, short orbital times and strong shear decouple young O stars from their parental gas clouds, so stellar feedback becomes background turbulence instead of clustered cloud disruption.

  2. IRIS: Deciphering Spectral-Line Imagery of the Galactic Center by Machine-Learning on Simulations

    astro-ph.GA 2026-07 unverdicted novelty 6.0 of 10

    A CNN trained on AREPO simulations and synthetic observations reverts edge-on 13CO spectral data to top-down views of the CMZ as a proof-of-concept for supervised reversion.

  3. The Rosetta Stone Project. I. A suite of radiative magnetohydrodynamics simulations of high-mass star-forming clumps

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    A catalog of radiative magnetohydrodynamics simulations shows magnetic field strength has the largest influence on how massive star-forming clumps fragment and form stars, and that the luminosity-to-mass ratio is a ro...

Pith tools