Analysing surveys of our Galaxy I: basic astrometric data
arXiv:1108.1749 · doi:10.1111/j.1365-2966.2011.19879.x
Abstract
We consider what is the best way to extract science from large surveys of the Milky Way galaxy. The diversity of data gathered in these surveys, together with our position within the Galaxy, imply that science must be extracted by fitting dynamical models to the data in the space of the observables. Models based on orbital tori promise to be superior for this task than traditional types of models, such as N-body models and Schwarzschild models. A formalism that allows such models to be fitted to data is developed and tested on pseudodata of varying richness.
15 pages, 6 figures, MNRAS accepted, changed to reflect final version
References in corpus (11)
- The Radial Velocity Experiment (RAVE): first data release
- Mass models of the Milky Way
- The accretion origin of the Milky Way's stellar halo
- The Geneva-Copenhagen Survey of the Solar neighbourhood II. New uvby calibrations and rediscussion of stellar ages, the G dwarf problem, age-metallicity diagram, and heating mechanisms of the disk
- Galaxia: a code to generate a synthetic survey of the Milky Way
- The RAdial Velocity Experiment (RAVE): Third Data Release
- Models of our Galaxy II
- NMAGIC: Fast Parallel Implementation of a Chi-Squared-Made-to-Measure Algorithm for Modelling Observational Data
- Unifying boxy bulge and planar long bar in the Milky Way
- The mechanics of tidal streams
- Disassembling the Galaxy with angle-action coordinates
Cited by in corpus (29)
- A direct dynamical measurement of the Milky Way's disk surface density profile, disk scale length, and dark matter profile at 4 kpc < R < 9 kpc
- Galaxy Masses
- Actions for axisymmetric potentials
- Markov Chain Monte Carlo Methods for Bayesian Data Analysis in Astronomy
- The Milky Way's Stellar Disk
- On the Hot Gas Content of the Milky Way Halo
- Characterising stellar halo populations I: An extended distribution function for halo K giants
- A Distant Echo of Milky Way Central Activity closes the Galaxy's Baryon Census
- Analysing surveys of our Galaxy -- II. Determining the potential
- Characterizing stellar halo populations II: The age gradient in blue horizontal-branch stars
- Torus mapper: a code for dynamical models of galaxies
- Dynamics for Galactic Archaeology
- Action-based distribution function modelling for constraining the shape of the Galactic dark matter halo
- Constraining the Galactic potential via action-based distribution functions for mono-abundance stellar populations
- Rotational signature of the Milky Way stellar halo
- Disc galaxy modelling with a particle-by-particle M2M method
- Action-based Dynamical Modelling for the Milky Way Disk
- M2M modelling of the Galactic disc via PRIMAL: Fitting to Gaia Error Added Data
- Modelling the stellar halo with RR-Lyrae stars
- Measuring Galactic Dark Matter through Unsupervised Machine Learning
- Orbit-superposition models of discrete, incomplete stellar kinematics: application to the Galactic centre
- An empirical formula for the distribution function of a thin exponential disc
- Our Galaxy's youngest disc
- Quantifying the influence of bars on action-based dynamical modelling of disc galaxies
- On the Cooling Flow Problem in the Gaseous Halo of the Milky Way
- Stellar population synthesis based modelling of the Milky Way using asteroseismology of dwarfs and subgiants from Kepler
- Vertical kinematics of the thick disc at 4.5 < R < 9.5 kpc
- Minimum-entropy constraints on galactic potentials
- Studying Dynamical Models of the Core Galaxy NGC 1399 with Merging Remnants