EDGE-INFERNO: How chemical enrichment assumptions impact the individual stars of a simulated ultra-faint dwarf galaxy
arXiv:2511.05695 · doi:10.1051/0004-6361/202558029
Abstract
The chemical abundances of stars in galaxies are a fossil record of the star formation and stellar evolution processes that regulate galaxy formation, including the stellar initial mass function, the fraction and timing of type Ia supernovae (SNeIa), and nucleosynthesis inside massive stars. In this paper, we systematically explore uncertainties associated with modeling chemical enrichment in dwarf galaxies. We repeatedly simulate a single EDGE-INFERNO dwarf (), varying the chemical yields of massive stars, the timing and yields of SNeIa, and the intrinsic stochasticity that arises from sampling individual stars and galaxy formation chaoticity. All simulations are high-resolution (3.6 pc), cosmological zoom-in hydrodynamical simulations that track the stellar evolution of all individual stars with masses . We find that variations in SNIa assumptions make the largest difference in mean abundance ratios and [Fe/H], highlighting the importance of detailed SNIa modeling even in such low-mass reionization-limited galaxies. In contrast, different massive star yields, accounting (or not) for stellar rotation, result in mean abundances comparable to those arising from stochasticity. Nonetheless, they significantly affect the shape of abundance trends with [Fe/H], for example, through the existence (or not) of a bimodality in the [X/Fe] - [Fe/H] planes, particularly in [Al/Fe]. Finally, we find that the variance arising from random sampling severely limits the interpretation of single galaxies. Our analysis showcases the power of star-by-star cosmological models to unpick how both systematic uncertainties (e.g., assumptions in low-metallicity chemical enrichment) and statistical uncertainties (e.g., averaging over enough galaxies and stars within a galaxy) affect the interpretation of chemical observables in ultra-faint dwarf galaxies.
Submitted to Astronomy & Astrophysics
References in corpus (55)
- The Kinematics of the Ultra-Faint Milky Way Satellites: Solving the Missing Satellite Problem
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- Momentum Injection by Supernovae in the Interstellar Medium
- The Quenching of the Ultra-Faint Dwarf Galaxies in the Reionization Era
- Super and massive AGB stars - IV. Final fates - Initial to final mass relation
- Segue 1: An Unevolved Fossil Galaxy from the Early Universe
- A simple multigrid scheme for solving the Poisson equation with arbitrary domain boundaries
- Farthest Neighbor: The Distant Milky Way Satellite Eridanus II
- Exploring Halo Substructure with Giant Stars: The Dynamics and Metallicity of the Dwarf Spheroidal in Bootes
- Super and massive AGB stars - III. Nucleosynthesis in metal-poor and very metal-poor stars - Z=0.001 and 0.0001
- Kinematics of Antlia 2 and Crater 2 from The Southern Stellar Stream Spectroscopic Survey (S5)
- Carbon-Enhanced Metal-Poor Stars: Relics from the Dark Ages
- EDGE: From quiescent to gas-rich to star-forming low-mass dwarf galaxies
- Discreteness Effects in Lambda Cold Dark Matter Simulations: A Wavelet-Statistical View
- Very Massive Stars in the Local Universe
- Detailed Abundances in the Ultra-faint Magellanic Satellites Carina II and III
- Observational constraints on stellar feedback in dwarf galaxies
- Elemental Abundances in M31: The Kinematics and Chemical Evolution of Dwarf Spheroidal Satellite Galaxies
- Multiple Chemodynamic Stellar Populations of the Ursa Minor Dwarf Spheroidal Galaxy
- L-GALAXIES 2020: The evolution of radial metallicity profiles and global metallicities in disc galaxies
- A simple method to convert sink particles into stars
- Kinematics and Metallicities in the Bootes III Stellar Overdensity: a Disrupted Dwarf Galaxy?
- Andromeda XXI -- a dwarf galaxy in a low density dark matter halo
- Ultra-faint dwarf galaxies: unveiling the minimum mass of the first stars
- Spectroscopy of the three distant Andromedan satellites Cassiopeia III, Lacerta I, and Perseus I
- Zinc in the Sculptor dwarf spheroidal galaxy
- Beyond the two-infall model I. Indications for a recent gas infall with Gaia DR3 chemical abundances
- VLT Spectroscopy of Ultra-Faint Dwarf Galaxies. 1. Boötes I, Leo IV, Leo V
- How runaway stars boost galactic outflows
- INFERNO: Galactic winds in dwarf galaxies with star-by-star simulations including runaway stars
- GenetIC -- a new initial conditions generator to support genetically modified zoom simulations
- Quadratic genetic modifications: a streamlined route to cosmological simulations with controlled merger history
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- Detailed chemical abundances of stars in the outskirts of the Tucana II ultra-faint dwarf galaxy
- Metallicity Distribution Functions of 13 Ultra-Faint Dwarf Galaxy Candidates from Hubble Space Telescope Narrowband Imaging
- Supernovae feedback propagation: the role of turbulence
- R-process enrichment in ultrafaint dwarf galaxies
- How much metals did the first stars provide to the ultra-faint dwarfs?
- Tracing Pop III supernovae with extreme energies through the Sculptor dwarf spheroidal galaxy
- EDGE: The sensitivity of ultra-faint dwarfs to a metallicity-dependent initial mass function
- Elemental abundances in M31: [Fe/H] and [α/Fe] in M31 Dwarf Galaxies Using Coadded Spectra
- EDGE: The emergence of dwarf galaxy scaling relations from cosmological radiation-hydrodynamics simulations
- EDGE-INFERNO: Simulating every observable star in faint dwarf galaxies and their consequences for resolved-star photometric surveys
- Inhomogeneous Galactic Chemical Evolution: Modelling Ultra-Faint Dwarf Galaxies of the Large Magellanic Cloud
- Runaway stars masquerading as star formation in galactic outskirts
- Nucleosynthetic yields of intermediate-mass primordial to extremely metal-poor stars
- Quantifying the intrinsic variability due to randomness of the Auriga galaxy formation model
- Andromeda XXV -- a dwarf galaxy with a low central dark matter density
- Measuring Dwarf Galaxy Intrinsic Abundance Scatter with Mid-resolution Spectroscopic Surveys: Calibrating APOGEE Abundance Errors
- Kinematics and metallicity of the dwarf spheroidal galaxy Andromeda XVIII
- Inferring Galactic Parameters from Chemical Abundances with Simulation-Based Inference
- Understanding Stellar Mass-Metallicity and Size Relations in Simulated Ultra-Faint Dwarf Galaxies
- A Bimodal Metallicity Distribution Function in the Ultra-Faint Dwarf Galaxy Reticulum II
- MUSE observations of dwarf galaxies and a stellar stream in the M83 group
- What Sets the Metallicity of Ultra-Faint Dwarfs?