Age velocity dispersion relations and heating histories in disc galaxies
arXiv:1607.01972 · doi:10.1093/mnras/stw1639
Abstract
We analyse the heating of stellar discs by non axisymmetric structures and giant molecular clouds (GMCs) in N-body simulations of growing disc galaxies. The analysis resolves long-standing discrepancies between models and data by demonstrating the importance of distinguishing between measured age-velocity dispersion relations (AVRs) and the heating histories of the stars that make up the AVR. We fit both AVRs and heating histories with formulae proportional to t^beta and determine the exponents beta_R and beta_z derived from in-plane and vertical AVRs and ~beta_R and ~beta_z from heating histories. Values of beta_z are in almost all simulations larger than values of ~beta_z, whereas values of beta_R are similar to or mildly larger than values of ~beta_R. Moreover, values of beta_z (~beta_z) are generally larger than values of beta_R (~beta_R). The dominant cause of these relations is the decline over the life of the disc in importance of GMCs as heating agents relative to spiral structure and the bar. We examine how age errors and biases in solar neighbourhood surveys influence the measured AVR: they tend to decrease beta values by smearing out ages and thus measured dispersions. We compare AVRs and velocity ellipsoid shapes sigma_z/sigma_R from simulations to Solar neighbourhood data. We conclude that for the expected disc mass and dark halo structure, combined GMC and spiral/bar heating can explain the AVR of the Galactic thin disc. Strong departures of the disc mass or the dark halo structure from expectation spoil fits to the data.
Accepted for publication in MNRAS, 19 pages, 8 figures, 1 table
References in corpus (8)
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- 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
- Dissecting simulated disc galaxies II: the age-velocity relation
- The Rich Are Different: Evidence from the RAVE Survey for Stellar Radial Migration
- A clear age-velocity dispersion correlation in Andromeda's stellar disk
- The Contribution of Spiral Arms to the Thick Disk along the Hubble Sequence
Cited by in corpus (54)
- Painting a portrait of the Galactic disc with its stellar clusters
- Overview of the DESI Milky Way Survey
- 3D kinematics and age distribution of the Open Cluster population
- The Galactic distribution of X-ray binaries and its implications for compact object formation and natal kicks
- The age-velocity dispersion relation of the Galactic discs from LAMOST-Gaia data
- Exploring the age dependent properties of M and L dwarfs using Gaia and SDSS
- Kinematics of the local disk from the RAVE survey and the Gaia first data release
- Spectroscopic age estimates for APOGEE red-giant stars: Precise spatial and kinematic trends with age in the Galactic disc
- Combining Stellar Populations with Orbit-Superposition Dynamical Modelling - the Formation History of the Lenticular Galaxy NGC 3115
- Prospects for Measuring Abundances of >20 Elements with Low-resolution Stellar Spectra
- On the origin of the Galactic thin and thick discs, their abundance gradients and the diagnostic potential of their abundance ratios
- Exploring the Galactic Warp Through Asymmetries in the Kinematics of the Galactic Disk
- Prospects for Galactic and stellar astrophysics with asteroseismology of giant stars in the Continuous Viewing Zones and beyond
- Disk settling and dynamical heating: histories of Milky Way-mass stellar disks across cosmic time in the FIRE simulations
- The origin and fate of the Gaia phase-space snail
- Exploring the evolution of stellar rotation using Galactic kinematics
- Planets Across Space and Time (PAST). I. Characterizing the Memberships of Galactic Components and Stellar Ages: Revisiting the Kinematic Methods and Applying to Planet Host Stars
- Galactic Kinematics and Observed Flare Rates of a Volume-Complete Sample of Mid-to-Late M-dwarfs: Constraints on the History of the Stellar Radiation Environment of Planets Orbiting Low-mass Stars
- Exploring the origin of thick disks using the NewHorizon and Galactica simulations
- The Fornax3D project: Assembly histories of lenticular galaxies from a combined dynamical and population orbital analysis
- The impact of spurious collisional heating on the morphological evolution of simulated galactic discs
- A unified model for age-velocity dispersion relations in Local Group galaxies: Disentangling ISM turbulence and latent dynamical heating
- From giant clumps to clouds -- II. The emergence of thick disc kinematics from the conditions of star formation in high redshift gas rich galaxies
- Kinematic properties of white dwarfs. Galactic orbital parameters and age-velocity dispersion relation
- A self-consistent dynamical model of the Milky Way disc adjusted to Gaia data
- Distribution functions for resonantly trapped orbits in the Galactic disc
- The Flattening Metallicity Gradient in the Milky Way's Thin Disk
- The structural evolution of galaxies with both thin and thick discs
- Migration and kinematics in growing disc galaxies with thin and thick discs
- The velocity ellipsoid in the Galactic disc using Gaia DR1
- The relationship between age, metallicity, and abundances for disk stars in a simulated Milky Way galaxy
- The structure of the Milky Way based on unWISE 3.4m integrated photometry
- A kinematic calibration of the O-rich Mira variable period-age relation from Gaia
- Radial migration and vertical action in N-body simulations
- Disk heating and bending instability in galaxies with counterrotation
- Beyond the Local Volume. II. Population Scaleheights and Ages of Ultracool Dwarfs in Deep HST/WFC3 Parallel Fields
- Efficient radial migration by giant molecular clouds in the first several hundred Myr after the stellar birth
- Vertical structure of Galactic disk kinematics from LAMOST K giants
- Imprints of Zero-Age Velocity Dispersions and Dynamical Heating on the Age-Velocity dispersion Relation
- Recent star formation episodes in the Galaxy: impact on its chemical properties and the evolution of its abundance gradient
- Deciphering the Milky Way disc formation time encrypted in the bar chrono-kinematics
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- A catalogue of asteroseismically calibrated ages for APOGEE DR17. The predictions of a CatBoost machine learning model based on the [Mg/Ce] chemical clock and other stellar parameters
- The diverse physical origins of stars in the dynamically hot bulge: CALIFA vs. IllustrisTNG
- Turbulent gas-rich discs at high redshift: origin of thick stellar discs through 3D 'baryon sloshing'
- Potential Impact of the Sagittarius Dwarf Galaxy on the Formation of Young O-rich Stars
- HI 21 cm observation and mass models of the extremely thin galaxy FGC 1440
- zoomies: A tool to infer stellar age from vertical action in Gaia data
- Fundamental limits to orbit reconstruction due to non-conservation of stellar actions in a Milky Way-like simulation
- Morphological evolution of disk galaxies and their concentration, asymmetry and clumpiness (CAS) properties in simulations across Toomre's parameter
- Large-Scale Stellar Age-Velocity Spiral Pattern in NGC 4030
- On the Origin of the Variety of Velocity Dispersion Profiles of Galaxies
- Investigating the vertical distribution of the disk as a function of radial action: Results from simulations
- A 'Quick Look' at All-Sky Galactic Archeology with TESS: 158,000 Oscillating Red Giants from the MIT Quick-Look Pipeline