Extended distribution functions for our Galaxy
arXiv:1501.02227 · doi:10.1093/mnras/stv578
Abstract
We extend models of our Galaxy based on distribution functions (DFs) that are analytic functions of the action integrals to extended distribution functions (EDFs), which have an analytic dependence on metallicity as well. We use a simple, but physically-motivated, functional forms for the metallicity of the interstellar medium as a function of radius and time and for the star-formation rate, and a model for the diffusion of stars through phase space to suggest the required functional form of an EDF. We introduce a simple prescription for radial migration that preserves the overall profile of the disc while allowing individual stars to migrate throughout the disc. Our models explicitly consider the thin and thick discs as two distinct components separated in age. We show how an EDF can be used to incorporate realistic selection functions in models, and to construct mock catalogues of observed samples. We show that the selection function of the Geneva-Copenhagen Survey (GCS) biases in favour of young stars, which have atypically small random velocities. With the selection function taken into account our models produce good fits of the GCS data in chemo-dynamical space and the Gilmore and Reid (1983) density data. From our EDF, we predict the structure of the SEGUE G-dwarf sample. The kinematics are successfully predicted. The predicted metallicity distribution has too few stars with [Fe/H] dex and too many metal-rich stars. A significant problem may be the lack of any chemical-kinematic correlations in our thick disc. We argue that EDFs will prove essential tools for the analysis of both observational data and sophisticated models of Galaxy formation and evolution.
24 pages, 18 figures, accepted for publication in MNRAS
References in corpus (11)
- The Radial Velocity Experiment (RAVE): first data release
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- 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
- On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk
- Constraining the Galaxy's dark halo with RAVE stars
- The SEGUE Stellar Parameter Pipeline. IV. Validation with an Extended Sample of Galactic Globular and Open Clusters
- Galactic Globular and Open Clusters in the Sloan Digital Sky Survey. II. Test of Theoretical Stellar Isochrones
- The Rich Are Different: Evidence from the RAVE Survey for Stellar Radial Migration
- Action-based distribution functions for spheroidal galaxy components
- The chemical evolution of a Milky Way-like galaxy: the importance of a cosmologically motivated infall law
Cited by in corpus (18)
- Markov Chain Monte Carlo Methods for Bayesian Data Analysis in Astronomy
- The total stellar halo mass of the Milky Way
- The GALAH survey: tracing the Galactic disk with Open Clusters
- How magnetic activity alters what we learn from stellar spectra
- Unveiling the time evolution of chemical abundances across the Milky Way disk with APOGEE
- Bringing the Galaxy's dark halo to life
- Characterizing stellar halo populations II: The age gradient in blue horizontal-branch stars
- A Parametric Galactic Model toward the Galactic Bulge Based on Gaia and Microlensing Data
- Modelling the Milky Way's globular cluster system
- Milky Way's Thick and Thin disk: Is there distinct thick disk?
- Orbital Torus Imaging: Using Element Abundances to Map Orbits and Mass in the Milky Way
- Migration and kinematics in growing disc galaxies with thin and thick discs
- Managing resonant trapped orbits in our Galaxy
- Radial phase spirals in the Solar neighbourhood
- Explosive nucleosynthesis of a metal-deficient star as the source of a distinct odd-even effect in the solar twin HIP 11915
- Made-to-measure galaxy modelling utilising absorption line strength data
- Recent star formation episodes in the Galaxy: impact on its chemical properties and the evolution of its abundance gradient
- An observational testbed for cosmological zoom-in simulations: constraining stellar migration in the solar cylinder using asteroseismology