The Milky Way in context: The formation of galactic discs and chemical sequences from a cosmological perspective
arXiv:2506.07038 · doi:10.1093/mnras/staf1551
Abstract
We study the formation of chemical sequences in the stellar disc of Milky Way (MW)-mass galaxies in a full cosmological context with the auriga simulations. We focus on the conditions giving rise to bi-modal -chemistry in the MW disc and the potential influence of mergers (e.g. Gaia-Enceladus, GSE). We find a wide diversity of chemical sequences, without correlation between the emergence of dichotomous -chemistry and GSE-like mergers. The transition between multiple -sequences is sequential, and is mediated by modulations in the star formation rate (SFR). In some cases, this can be caused by the starburst and subsequent quiescence induced by mergers. In others, by exhaustion or violent disruption of the gas disc. Realisations with singular sequences either lack significant modulations in their SFR, or form too late to have a significant high- sequence. The metallicity overlap between the high- and low- sequences (as seen in the Solar neighbourhood of the MW) arises from accretion of metal-poor gas from the circum-galactic medium. This depends on gas disc thickness, with thinner discs losing their metal-poor extremities. Gas donation from singular gas-rich merger events are incapable of driving long-lived metal dilution (), and we rule-out this scenario for the low- sequence in the MW. Finally, the shape of -sequences in the [Fe/H] versus [Mg/Fe] plane is related to long-term SFR trends, with a downward slanted locus (as is observed in the low- sequence of the MW) owing to a sustained or declining SFR.
23 pages, 16 figures, published in MNRAS
References in corpus (69)
- The Gaia mission
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- The Radial Velocity Experiment (RAVE): first data release
- The GALAH Survey: Scientific Motivation
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Kraken reveals itself -- the merger history of the Milky Way reconstructed with the E-MOSAICS simulations
- A time-resolved picture of our Milky Way's early formation history
- A First Constraint on the Thick Disk Scale Length: Differential Radial Abundances in K Giants at Galactocentric Radii 4, 8, and 12 kpc
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- The age-metallicity structure of the Milky Way disk
- Reconstructing the star formation history of the Milky Way disc(s) from chemical abundances
- Age dissection of the Milky Way discs: red giants in the Kepler field
- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- Reconstructing the Last Major Merger of the Milky Way with the H3 Survey
- ZFOURGE/CANDELS: On the Evolution of M* Galaxy Progenitors from z=3 to 0.5
- The total stellar halo mass of the Milky Way
- The Fall of a Giant. Chemical evolution of Enceladus, alias the Gaia Sausage
- Origin of chemically distinct discs in the Auriga cosmological simulations
- Sausage & Mash: The dual origin of the Galactic thick disc and halo from the gas-rich Gaia-Enceladus-Sausage merger
- The AMBRE Project: chemical evolution models for the Milky Way thick and thin discs
- Timing the Early Assembly of the Milky Way with the H3 Survey
- Chemical Enrichment and Radial Migration in the Galactic Disk -- the origin of the [ Double Sequence
- StarHorse results for spectroscopic surveys + Gaia DR3: Chrono-chemical populations in the solar vicinity, the genuine thick disk, and young-alpha rich stars
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- The Near Infrared Imager and Slitless Spectrograph for the James Webb Space Telescope -- II. Wide Field Slitless Spectroscopy
- Keeping it Cool: Much Orbit Migration, yet Little Heating, in the Galactic Disk
- Spatially resolved star formation and fuelling in galaxy interactions
- The AMBRE project: The thick thin disk and thin thick disk of the Milky Way
- APOGEE DR16: a multi-zone chemical evolution model for the Galactic disc based on MCMC methods
- Reconstructing the Disrupted Dwarf Galaxy -Sausage/Enceladus Using its Stars and Globular Clusters
- Impact of radial migration on stellar and gas radial metallicity distribution
- Interacting galaxies in the IllustrisTNG simulations -- II: Star formation in the post-merger stage
- A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
- Chemical evolution of the Milky Way: constraints on the formation of the thick and thin discs
- Bimodality of [α/Fe]-[Fe/H] distributions is a natural outcome of dissipative collapse and disc growth in Milky Way-type galaxies
- Co-formation of the thin and thick discs revealed by APOGEE-DR16 and Gaia-DR2
- VINTERGATAN III: how to reset the metallicity of the Milky Way
- Merger-induced galaxy transformations in the ARTEMIS simulations
- Early Results from GLASS-JWST. XXI: Rapid assembly of a galaxy at z=6.23 revealed by its C/O abundance
- Characterizing epochs of star formation across the Milky Way disc using age-metallicity distributions of GALAH stars
- Chasing the impact of the Gaia-Sausage-Enceladus merger on the formation of the Milky Way thick disc
- On the origin of the Galactic thin and thick discs, their abundance gradients and the diagnostic potential of their abundance ratios
- Beyond the two-infall model I. Indications for a recent gas infall with Gaia DR3 chemical abundances
- The Extremely Large Telescope
- The stellar velocity distribution function in the Milky Way galaxy
- The Three-Phase Evolution of the Milky Way
- The Milky Way's bulge star formation history as constrained from its bimodal chemical abundance distribution
- The impact of early massive mergers on the chemical evolution of Milky Way-like galaxies: insights from NIHAO-UHD simulations
- Connections between galaxy mergers and Starburst: evidence from local Universe
- Migration and Mixing in the Galactic Disc from Encounters between Sagittarius and the Milky Way
- Chemical Evolution with Radial Mixing Redux: Extending beyond the Solar Neighborhood
- VINTERGATAN IV: Cosmic phases of star formation in Milky Way-like galaxies
- An [/Fe]-enhanced thick disk in a Milky Way Analogue
- (Re)mind the gap: a hiatus in star formation history unveiled by APOGEE DR17
- Exploring the diversity and similarity of radially anisotropic Milky Way-like stellar haloes: implications for disrupted dwarf galaxy searches
- Dynamics of Stellar Disk Tilting from Satellite Mergers
- Galactic Chemical Evolution Models Favor an Extended Type Ia Supernova Delay-Time Distribution
- The Panchromatic Hubble Andromeda Treasury XX: The Disk of M31 is Thick
- The survey of planetary nebulae in Andromeda (M31) VII. Predictions of a major merger simulation model compared with chemodynamical data of the disc and inner halo substructures
- Linking high-z and low-z: Are We Observing the Progenitors of the Milky Way with JWST?
- Resolved mass assembly and star formation in Milky Way Progenitors since from JWST/CANUCS: From clumps and mergers to well-ordered disks
- The Andromeda Galaxy's Last Major Merger: Constraints from the survey of Planetary Nebulae