Dynamics for Galactic Archaeology
arXiv:1309.2794 · doi:10.1016/j.newar.2013.08.001
Abstract
Our Galaxy is a complex machine in which several processes operate simultaneously: metal-poor gas is accreted, is chemically enriched by dying stars, and then drifts inwards, surrendering its angular momentum to stars; new stars are formed on nearly circular orbits in the equatorial plane and then diffuse through orbit space to eccentric and inclined orbits; the central stellar bar surrenders angular momentum to the surrounding disc and dark halo while acquiring angular momentum from inspiralling gas; the outer parts of the disc are constantly disturbed by satellite objects, both luminous and dark, as they sweep through pericentre. We review the conceptual tools required to bring these complex happenings into focus. Our first concern must be the construction of equilibrium models of the Galaxy, for upon these hang our hopes of determining the Galaxy's mean gravitational field, which is required for every subsequent step. Ideally our equilibrium model should be formulated so that the secular evolution of the system can be modelled with perturbation theory. Such theory can be used to understand how stars diffuse through orbit space from either the thin gas disc in which we presume disc stars formed, or the debris of an accreted object, the presumed origin of many halo stars. Coupling this understanding to the still very uncertain predictions of the theory of stellar evolution and nucleosynthesis, we can finally extract a complete model of the chemodynamic evolution of our reasonably generic Galaxy. We discuss the relation of such a model to cosmological simulations of galaxy formation, which provide general guidance but cannot be relied on for quantitative detail.
71 pages to appear in New Astron. Rev. (2013), http://dx.doi.org/10.1016/j.newar.2013.08.001
References in corpus (15)
- The Radial Velocity Experiment (RAVE): first data release
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- The Milky Way Tomography with SDSS: II. Stellar Metallicity
- 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
- The Origin of the Bifurcation in the Sagittarius Stream
- Detection of a 60 Degree-Long Dwarf Galaxy Debris Stream
- The mechanics of tidal streams
- The long Galactic bar as seen by UKIDSS Galactic Plane Survey
- Disassembling the Galaxy with angle-action coordinates
- The case for OH suppression at near-infrared wavelengths
- Radial Flows and Angular Momentum Conservation in Galactic Chemical Evolution
- Nuclear Star-Forming Ring of the Milky Way: Simulations
- Fitting orbits to tidal streams with proper motions
- Dynamical Evolution of Disk Galaxies
Cited by in corpus (28)
- The Galaxy in Context: Structural, Kinematic and Integrated Properties
- The Local Dark Matter Density
- Markov Chain Monte Carlo Methods for Bayesian Data Analysis in Astronomy
- Chemodynamical evolution of the Milky Way disk II: Variations with Galactic radius and height above the disk plane
- Using chemical tagging to redefine the interface of the Galactic disk and halo
- On the Shoulders of Giants: Properties of the Stellar Halo and the Milky Way Mass Distribution
- Star formation sustained by gas accretion
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- Dark matter local density determination: recent observations and future prospects
- The shape of the inner Milky Way halo from observations of the Pal 5 and GD-1 stellar streams
- Radial and vertical flows induced by galactic spiral arms: likely contributors to our "wobbly Galaxy''
- Age velocity dispersion relations and heating histories in disc galaxies
- A review of action estimation methods for galactic dynamics
- The Rich Are Different: Evidence from the RAVE Survey for Stellar Radial Migration
- The Milky Way Tomography with SDSS. V. Mapping the Dark Matter Halo
- NIHAO XVI: The properties and evolution of kinematically selected discs, bulges and stellar haloes
- The hunt for the Milky Way's accreted disc
- Yule-Simpson's paradox in Galactic Archaeology
- Stars behind bars II: A cosmological formation scenario for the Milky Way's central stellar structure
- Action-based Dynamical Modelling for the Milky Way Disk
- Deep Potential: Recovering the gravitational potential from a snapshot of phase space
- Jeans that fit: weighing the mass of the Milky Way analogues in the universe
- Galaxy archaeology for wet mergers: Globular cluster age distributions in the Milky Way and nearby galaxies
- Gaussian Process Model for the Local Stellar Velocity Field from Gaia Data Release 2
- Deep Potential: Recovering the gravitational potential from a snapshot of phase space
- LISA double white dwarf binaries as Galactic accelerometers
- The Doubloon Models of Dark Haloes
- Inferring Time-Dependent Distribution Functions from Kinematic Snapshots