The chemical enrichment of the Milky Way disk evaluated using conditional abundances
arXiv:2206.02772 · doi:10.3847/1538-4357/aca8a1
Abstract
Chemical abundances of stars in the Milky Way disk are empirical tracers of its enrichment history. However, they capture joint-information that is valuable to disentangle. In this work, we seek to quantify how individual abundances evolve across the present-day radius of the disk, at fixed supernovae contribution ([Fe/H], [Mg/Fe]). We use 18,135 APOGEE DR17 red clump stars and 7,943 GALAH DR3 main sequence stars to compare the abundance distributions conditioned on ([Fe/H], [Mg/Fe]) across kpc and kpc, respectively. In total we examine 15 elements: C, N, Al, K (light), O, Si, S, Ca, (), Mn, Ni, Cr, Cu, (iron-peak) Ce, Ba (s-process) and Eu (r-process). We find that the conditional neutron capture and light elements most significantly trace variations in the disk's enrichment history, with absolute conditional radial gradients dex/kpc. The other elements studied have absolute conditional gradients dex/kpc. We uncover structured conditional abundance variations as a function of [Fe/H] for the low-, but not the high- sequence. The average scatter between the mean conditional abundances at different radii is 0.02 dex (with Ce, Eu, Ba 0.05 dex). These results serve as a measure of the magnitude via which different elements trace Galactic radial enrichment history once fiducial supernovae correlations are accounted for. Furthermore, we uncover subtle systematic variations in all moments of the conditional abundance distributions that will presumably constrain chemical evolution models of the Galaxy.
Submitted to ApJ
References in corpus (29)
- galpy: A Python Library for Galactic Dynamics
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- The Gaia-ESO Survey: the Galactic Thick to Thin Disc transition
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- The TESS-HERMES survey Data Release 1: high-resolution spectroscopy of the TESS southern continuous viewing zone
- The Gaia-ESO Survey: the chemical structure of the Galactic discs from the first internal data release
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- The Rich Are Different: Evidence from the RAVE Survey for Stellar Radial Migration
- The Open Cluster Chemical Abundances and Mapping Survey: VI. Galactic Chemical Gradient Analysis from APOGEE DR17
- Chemical gradients in the Milky Way from the RAVE data. II. Giant stars
- Chemical (in)homogeneity and atomic diffusion in the open cluster M67
- Prospects for chemically tagging stars in the Galaxy
- Mapping the Galactic Metallicity Gradient with Open Clusters: The State-of-the-Art and Future Challenges
- The age-chemical abundance structure of the Galactic disc II: -dichotomy and thick disc formation
- Stellar Abundance Maps of the Milky Way Disk
- Chemical Cartography with APOGEE: Mapping Disk Populations with a Two-Process Model and Residual Abundances
- The homogeneity of the star forming environment of the Milky Way disk over time
- The Gaia-ESO Survey: Churning through the Milky Way
- Photospheric diagnostics of core helium burning in giant stars
- Exploring the s-process history in the Galactic disk: Cerium abundances and gradients in Open Clusters from the OCCAM/APOGEE sample
- Is it possible to reconcile extragalactic IMF variations with a universal Milky Way IMF?
- Residual Abundances in GALAH DR3: Implications for Nucleosynthesis and Identification of Unique Stellar Populations
- The relationship between age, metallicity, and abundances for disk stars in a simulated Milky Way galaxy
- Sc and neutron-capture abundances in Galactic low- and high-alpha field halo stars
- 4MOST Consortium Survey 3: Milky Way Disc and Bulge Low-Resolution Survey (4MIDABLE-LR)
- A data-driven model of nucleosynthesis with chemical tagging in a lower-dimensional latent space
- Tracing birth properties of stars with abundance clustering
- 4MOST Consortium Survey 1: The Milky Way Halo Low-Resolution Survey
Cited by in corpus (4)
- Unveiling the time evolution of chemical abundances across the Milky Way disk with APOGEE
- Evolution of the radial ISM metallicity gradient in the Milky Way disk since redshift
- Chemical Cartography with APOGEE: Two-process Parameters and Residual Abundances for 288,789 Stars from Data Release 17
- The Chemodynamical Nature of the Triangulum-Andromeda Overdensity