The Shape of FIREbox Galaxies and a Potential Tension with Low-mass Disks
arXiv:2503.05612 · doi:10.3847/1538-4357/ae31f4
Abstract
We study the intrinsic and observable shapes of approximately 700 star-forming galaxies with stellar masses of M from the FIREbox simulation at . We calculate intrinsic axis ratios using inertia tensors weighted by three morphology types: "All Stars," "Young Stars," and "Luminosity-weighted Stars." Young Stars shows mass-dependent 3D configurations, with spheroidal, elongated, and disky shapes dominant at stellar masses of M, M, and M, respectively. Using the radiative transfer code SKIRT, we construct mock images for each galaxy and show that projected short-to-long axis ratios, , inferred from 2D Sérsic fits are most closely related to Luminosity-weighted Stars tensor shapes and least resemble the All Stars' shapes. This suggests observed 2D shape distributions should not be compared to predictions based on 3D stellar mass shapes. Next, we construct a sample of mock images projected in random orientations and compare them to observed axis ratio distributions from the GAMA survey. At stellar masses below M, we produce too few galaxies with observed and none with , suggesting that FIREbox does not produce enough low-mass disk galaxies. At higher masses, M, we find that the predicted q distribution is sensitive to the dust-to-metal ratio; using our fiducial model, the distribution of values is formally consistent with observations, but there is tension with our ability to produce enough very thin systems with . Future observational and theoretical programs aimed at understanding disk and thin-disk fractions will provide crucial tests of galaxy formation models.
16 pages, 7 figures, 2 tables
References in corpus (23)
- The NumPy array: a structure for efficient numerical computation
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Updated Nearby Galaxy Catalog
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- Galaxy And Mass Assembly (GAMA): the G02 field, Herschel-ATLAS target selection and Data Release 3
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- Geometry of Star-Forming Galaxies from SDSS, 3D-HST and CANDELS
- Public data release of the FIRE-2 cosmological zoom-in simulations of galaxy formation
- FIREbox: Simulating galaxies at high dynamic range in a cosmological volume
- The shapes of galaxies in the Sloan Digital Sky Survey
- ELVES I: Structures of Dwarf Satellites of MW-like Galaxies; Morphology, Scaling Relations, and Intrinsic Shapes
- What Causes The Formation of Disks and End of Bursty Star Formation?
- Hot-mode accretion and the physics of thin-disk galaxy formation
- The bursty origin of the Milky Way thick disc
- Rapid disc settling and the transition from bursty to steady star formation in Milky Way-mass galaxies
- Born this way: thin disc, thick disc, and isotropic spheroid formation in FIRE-2 Milky-Way-mass galaxy simulations
- IllustrisTNG in the HSC-SSP: image data release and the major role of mini mergers as drivers of asymmetry and star formation
- Dissipative Dark Matter on FIRE: I. Structural and kinematic properties of dwarf galaxies
- Galaxies in the Illustris simulation as seen by the Sloan Digital Sky Survey - I: Bulge+disc decompositions, methods, and biases
- The High Fraction of Thin Disk Galaxies Continues to Challenge ΛCDM Cosmology
- AstroPhot: Fitting Everything Everywhere All at Once in Astronomical Images
- A MARVEL-ous study of how well galaxy shapes reflect Dark Matter halo shapes in Cold Dark Matter Simulations
- IllustrisTNG in the HSC-SSP: No Shortage of Thin Disk Galaxies in TNG50