Models of our Galaxy II
arXiv:1101.0747 · doi:10.1111/j.1365-2966.2011.18268.x
Abstract
Stars near the Sun oscillate both horizontally and vertically. In Paper I the coupling between these motions was modelled by determining the horizontal motion without reference to the vertical motion, and recovering the coupling by assuming that the vertical action is adiabatically conserved as the star oscillates horizontally. Here we show that, although the assumption of adiabatic invariance works well, more accurate results can be obtained by taking the vertical action into account when calculating the horizontal motion. We use orbital tori to present a simple but fairly realistic model of the Galaxy's discs in which the motion of stars is handled rigorously, without decomposing it into horizontal and vertical components. We examine the ability of the adiabatic approximation to calculate the model's observables, and find that it performs perfectly in the plane, but errs slightly away from the plane. When the new correction to the adiabatic approximation is used, the density, streaming velocity and velocity dispersions are in error by less than 10 per cent for distances up to $2.5\kpc$ from the Sun. The torus-based model reveals that at locations above the plane the long axis of the velocity ellipsoid points almost to the Galactic centre, even though the model potential is significantly flattened. This result contradicts the widespread belief that the shape of the Galaxy's potential can be strongly constrained by the orientation of velocity ellipsoid near the Sun. An analysis of orbits reveals that in a general potential the orientation of the velocity ellipsoid depends on the structure of the model's distribution function as much as on its gravitational potential, contrary to what is the case for Staeckel potentials. We argue that the adiabatic approximation will provide a valuable complement to torus-based models in the interpretation of current surveys of the Galaxy.
11 pages, 10 figures, accepted by MNRAS
References in corpus (5)
- Galaxia: a code to generate a synthetic survey of the Milky Way
- Kinematics and history of the solar neighbourhood revisited
- Distribution functions for the Milky Way
- Estimation of the Tilt of the Stellar Velocity Ellipsoid from RAVE and Implications for Mass Models
- Disassembling the Galaxy with angle-action coordinates
Cited by in corpus (105)
- The Galaxy in Context: Structural, Kinematic and Integrated Properties
- galpy: A Python Library for Galactic Dynamics
- The mass distribution and gravitational potential of the Milky Way
- Mass models of the Milky Way
- AGAMA: Action-based galaxy modelling architecture
- 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
- Inside Out and Upside Down: Tracing the Assembly of a Simulated Disk Galaxy Using Mono-Age Stellar Populations
- Actions for axisymmetric potentials
- The Milky Way's Stellar Disk
- Radial Migration Does Little for Galactic Disc Thickening
- Dark matter local density determination: recent observations and future prospects
- Kinematic modelling of the Milky Way using the RAVE and GCS stellar surveys
- The mass of our Milky Way
- The Galactic Disc in Action Space as seen by Gaia DR2
- A review of action estimation methods for galactic dynamics
- The signatures of the resonances of a large Galactic bar in local velocity space
- Extended distribution functions for our Galaxy
- Slicing and dicing the Milky Way disk in SDSS
- More dynamical models of our Galaxy
- Action-based distribution functions for spheroidal galaxy components
- Modelling the Galactic disc: perturbed distribution functions in the presence of spiral arms
- The vertical motion history of disk stars throughout the Galaxy
- The Effects of Radial Migration on the Vertical Structure of Galactic Discs
- The Circular Velocity Curve of the Milky Way from 5 to 25 kpc using luminous red giant branch star
- Determination of the Local Standard of Rest using the LSS-GAC DR1
- Identifying resonances of the Galactic bar in Gaia DR2: I. Clues from action space
- A centrally heated dark halo for our Galaxy
- Unveiling the Distinct Formation Pathways of the Inner and Outer Discs of the Milky Way with Bayesian Machine Learning
- The distribution function of the Galaxy's dark halo
- Bending Waves in the Milky Way's disc from halo substructure
- Angle-action estimation in a general axisymmetric potential
- Self-consistent models of our Galaxy
- The tilt of the velocity ellipsoid in the Milky Way disk
- First Gaia dynamical model of the Milky Way disc with six phase space coordinates: a test for galaxy dynamics
- The Kinematic Properties of Milky Way Stellar Halo Populations
- Analysing surveys of our Galaxy -- II. Determining the potential
- Staying away from the bar: the local dynamical signature of slow and fast bars in the Milky Way
- The dynamically selected stellar halo of the Galaxy with Gaia and the tilt of the velocity ellipsoid
- Torus mapper: a code for dynamical models of galaxies
- Galactoseismology and the Local Density of Dark Matter
- The detection and treatment of distance errors in kinematic analyses of stars
- The Stellar Distribution Function and Local Vertical Potential from Gaia DR2
- The asymmetric drift, the local standard of rest, and implications from RAVE data
- A new formula for disc kinematics
- Identifying resonances of the Galactic bar in Gaia DR2: II. Clues from angle space
- The Solar neighbourhood in angle coordinates: the Hyades moving group
- A self-consistent dynamical model of the Milky Way disc adjusted to Gaia data
- Analysing surveys of our Galaxy I: basic astrometric data
- Did Sgr cause the vertical waves in the solar neighbourhood?
- HALO7D II: The Halo Velocity Ellipsoid and Velocity Anisotropy with Distant Main Sequence Stars
- Applying Schwarzschild's orbit superposition method to barred or non-barred disc galaxies
- Dynamical model of the Milky Way using APOGEE and Gaia data
- Vertical Phase Mixing across the Galactic Disk
- Modelling the Milky Way's globular cluster system
- Distribution functions for resonantly trapped orbits in the Galactic disc
- Extending the Hyades
- Constraining the Galactic potential via action-based distribution functions for mono-abundance stellar populations
- Disc galaxy modelling with a particle-by-particle M2M method
- The Tilt of the Local Velocity Ellipsoid as Seen by Gaia
- The evolution of streams in a time-dependent potential
- Weighing the Galactic disk using phase-space spirals III. Probing distant regions of the disk using the Gaia EDR3 proper motion sample
- Resonant thickening of self-gravitating discs: imposed or self-induced orbital diffusion in the tightly wound limit
- Action-based Dynamical Modelling for the Milky Way Disk
- Mass distribution in rotating thin-disk galaxies according to Newtonian dynamics
- Chemodynamical signatures of bar resonances in the Galactic disk: current data and future prospects
- Action-based models for dwarf spheroidal galaxies and globular clusters
- Managing resonant trapped orbits in our Galaxy
- Self-consistent bulge/disk/halo galaxy dynamical modeling using integral field kinematics
- The tilt of the velocity ellipsoid in the Milky Way with Gaia DR2
- Testing lowered isothermal models with direct N-body simulations of globular clusters - II: Multimass models
- A new dynamically self-consistent version of the Besançon Galaxy Model
- The North/South Asymmetry of the Galaxy: Possible Connection to the Vertical Phase Space Snail
- Action-based Dynamical Modeling for the Milky Way Disk: The Influence of Spiral Arms
- Residuals of an Equilibrium Model for the Galaxy Reveal a State of Disequilibrium in the Solar Neighborhood
- An empirical formula for the distribution function of a thin exponential disc
- What can the alignments of the velocity moments tell us about the nature of the potential?
- Determining the velocity dispersion of the thick disc
- Extracting science from surveys of our Galaxy
- Radial Wave in the Galactic Disk: New Clues to Discriminate Different Perturbations
- Integrability of motion around galactic razor-thin disks
- A non-axisymmetric potential for the Milky Way disk
- Quantifying the influence of bars on action-based dynamical modelling of disc galaxies
- Radial and azimuthal gradients of the moving groups in Gaia DR3: The slow/fast bar degeneracy problem
- A simple formula for the third integral of motion of disk-crossing stars in the Galaxy
- Self-consistent modelling of our Galaxy with Gaia data
- Bisymmetric normal modes in soft-centred and realistic galactic discs
- Stellar population synthesis based modelling of the Milky Way using asteroseismology of dwarfs and subgiants from Kepler
- Modelling our Galaxy
- Envelopes and vertical amplitudes of disk-crossing orbits
- Investigating the vertical distribution of the disk as a function of radial action
- A New Potential Formula Applicable to Flattened Systems
- Chaotic orbital dynamics of pulsating stars around black holes surrounded by dark matter halos
- Envelopes for orbits around axially symmetric sources with spheroidal shape
- Chaotic dynamics of pulsating spheres orbiting black holes
- Self-consistent Modelling of the Milky Way using Gaia data
- Distribution functions for a family of general-relativistic Hypervirial models in collisionless regime
- Dynamical Models of the Milky Way in Action Space with LAMOST DR8 and GAIA EDR3
- Distribution functions for spheroids
- Wrinkles in Time. II. Stellar Age Trends in Kinematic Signatures from Transient Spiral Structure
- GalPort: Investigation of the bar in action-angle space
- The disturbed outer Milky Way disc
- Self-consistent modelling of the Milky Way's Nuclear Stellar Disc
- Perturbed distribution functions with accurate action estimates for the Galactic disc
- Chandrasekhar and Modern Stellar Dynamics