Disks no more: the morphology of low-mass simulated galaxies in FIREbox

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Benavides, José A., Sales, Laura V., Wetzel, Andrew, Moreno, Jorge, Feldmann, Robert, Mercado, Francisco J., Bullock, James S., Hopkins, Philip F., Faucher-Guigère, Claude-André, Stern, Jonathan, Wheeler, Coral, Kereš, Dušan
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915422926798848
author Benavides, José A.
Sales, Laura V.
Wetzel, Andrew
Moreno, Jorge
Feldmann, Robert
Mercado, Francisco J.
Bullock, James S.
Hopkins, Philip F.
Faucher-Guigère, Claude-André
Stern, Jonathan
Wheeler, Coral
Kereš, Dušan
author_facet Benavides, José A.
Sales, Laura V.
Wetzel, Andrew
Moreno, Jorge
Feldmann, Robert
Mercado, Francisco J.
Bullock, James S.
Hopkins, Philip F.
Faucher-Guigère, Claude-André
Stern, Jonathan
Wheeler, Coral
Kereš, Dušan
contents We study the morphology of hundreds of simulated central galaxies in the stellar mass range $M_\star=10^{7.5} \rm - 10^{11}~$\msun\, from the FIREbox cosmological volume. We demonstrate that FIREbox is able to predict a wide variety of morphologies, spanning from disk-dominated objects to spheroidal galaxies supported by stellar velocity dispersion. However, the simulations predict a strong relation between morphology (degree of rotational support) and stellar mass: galaxies comparable to the Milky Way are often disk-dominated while the presence of stellar disks mostly vanishes for dwarfs with $M_\star <10^9 ~$\msun. This defines a ``morphology transition'' regime for galaxies with $10^9 <M_\star/\rm{M_\odot}< 10^{10}$ in which disks become increasingly common, but below which disks are rare. We show that burstiness in the star formation history and the deepening of the gravitational potential strongly correlate in our simulations with this transition regime, with disks forming in objects with lower levels of burstiness in the last $\sim 6$ Gyr and halos with mass $\sim 10^{11} ~ \rm{M_{\odot}}$ and above. While observations support a transition towards thicker disks in the regime of dwarfs, our results are in partial disagreement with observations of at least some largely rotationally supported gas disks in dwarfs with $M_\star < 10^9$\msun. This study highlights dwarf morphology as a fundamental benchmark for testing future galaxy formation models.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00991
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Disks no more: the morphology of low-mass simulated galaxies in FIREbox
Benavides, José A.
Sales, Laura V.
Wetzel, Andrew
Moreno, Jorge
Feldmann, Robert
Mercado, Francisco J.
Bullock, James S.
Hopkins, Philip F.
Faucher-Guigère, Claude-André
Stern, Jonathan
Wheeler, Coral
Kereš, Dušan
Astrophysics of Galaxies
We study the morphology of hundreds of simulated central galaxies in the stellar mass range $M_\star=10^{7.5} \rm - 10^{11}~$\msun\, from the FIREbox cosmological volume. We demonstrate that FIREbox is able to predict a wide variety of morphologies, spanning from disk-dominated objects to spheroidal galaxies supported by stellar velocity dispersion. However, the simulations predict a strong relation between morphology (degree of rotational support) and stellar mass: galaxies comparable to the Milky Way are often disk-dominated while the presence of stellar disks mostly vanishes for dwarfs with $M_\star <10^9 ~$\msun. This defines a ``morphology transition'' regime for galaxies with $10^9 <M_\star/\rm{M_\odot}< 10^{10}$ in which disks become increasingly common, but below which disks are rare. We show that burstiness in the star formation history and the deepening of the gravitational potential strongly correlate in our simulations with this transition regime, with disks forming in objects with lower levels of burstiness in the last $\sim 6$ Gyr and halos with mass $\sim 10^{11} ~ \rm{M_{\odot}}$ and above. While observations support a transition towards thicker disks in the regime of dwarfs, our results are in partial disagreement with observations of at least some largely rotationally supported gas disks in dwarfs with $M_\star < 10^9$\msun. This study highlights dwarf morphology as a fundamental benchmark for testing future galaxy formation models.
title Disks no more: the morphology of low-mass simulated galaxies in FIREbox
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2508.00991