Reliability and limitations of inferring birth radii in the Milky Way disk
arXiv:2205.00340 · doi:10.1093/mnrasl/slac065
Abstract
Recovering the birth radii of observed stars in the Milky Way is one of the ultimate goals of Galactic Archaeology. One method to infer the birth radius and the evolution of the ISM metallicity assumes a linear relation between the ISM metallicity with radius at any given look-back time. Here we test the reliability of this assumption by using 4 zoom-in cosmological hydrodynamic simulations from the NIHAO-UHD project. We find that one can infer precise birth radii only when the stellar disk starts to form, which for our modeled galaxies happens ~ 10 Gyr ago, in agreement with recent estimates for the Milky Way. At later times the linear correlation between the ISM metallicity and radius increases, as stellar motions become more ordered and the azimuthal variations of the ISM metallicity start to drop. The formation of a central bar and perturbations from mergers can increase this uncertainty in the inner and outer disk, respectively.
References in corpus (19)
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- Chemical Homogeneity in Collinder 261 and Implications for Chemical Tagging
- Mapping the Galactic Metallicity Gradient with Open Clusters: The State-of-the-Art and Future Challenges
- Large Metallicity Variations in the Galactic Interstellar Medium
- 3-D gas-phase elemental abundances across the formation histories of Milky Way-mass galaxies in the FIRE simulations: initial conditions for chemical tagging
- How Many Elements Matter?
- Stellar Abundance Maps of the Milky Way Disk
- Quantifying radial migration in the Milky Way: Inefficient over short timescales but essential to the very outer disc beyond ~15 kpc
- The homogeneity of the star forming environment of the Milky Way disk over time
- The challenge of simultaneously matching the observed diversity of chemical abundance patterns in cosmological hydrodynamical simulations
- Radial abundance gradients in the outer Galactic disk as traced by main-sequence OB stars
- Stellar populations across galaxy bars in the MUSE TIMER project
- Distant Relatives: The Chemical Homogeneity of Comoving Pairs Identified in Gaia
- Birth of the Galactic Disk Revealed by the H3 Survey
- Arm-interarm gas abundance variations explored with MUSE: the role of spiral structure in the chemical enrichment of galaxies
- About Metallicity Variations in the Local Galactic Interstellar Medium
- A GALAH View of the Chemical Homogeneity and Ages of Stellar Strings Identified in Gaia
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- On the origin of the Galactic thin and thick discs, their abundance gradients and the diagnostic potential of their abundance ratios
- The Gaia-ESO Survey: Old super-metal-rich visitors from the inner Galaxy
- Empirical derivation of the metallicity evolution with time and radius using TNG50 Milky Way/Andromeda analogues
- Evolution of the radial ISM metallicity gradient in the Milky Way disk since redshift
- The Non-Axisymmetric Influence: Radius and Angle-Dependent Trends in a Barred Galaxy
- Recent star formation episodes in the Galaxy: impact on its chemical properties and the evolution of its abundance gradient
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
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