From giant clumps to clouds -- II. The emergence of thick disc kinematics from the conditions of star formation in high redshift gas rich galaxies
arXiv:2110.13165 · doi:10.1093/mnras/stac692
Abstract
High redshift disc galaxies are more gas rich, clumpier, and more turbulent than local Universe galaxies. This early era of galaxy formation imprints the distribution and kinematics of the stars that we observe today, but it is not yet well established how. In this work, we use simulations of isolated Milky Way-mass disc galaxies to study how kinematic properties of stars change when varying the gas fraction. This allows us to quantify the roles played by internal processes, e.g. gas turbulence and gravitational scattering off massive gas clumps, in establishing the observed stellar velocity dispersions and orbital eccentricities. We find that models with gas fractions per cent feature a turbulent and clumpy interstellar medium (ISM), leading to zero-age stellar velocity dispersions and high mean orbital eccentricities. Low eccentricities cannot arise from these physical conditions. For gas fractions below per cent, the ISM becomes less turbulent, with stellar velocity dispersions , and nearly circular orbits for young stars. The turbulence present in gas-rich high redshift galaxies hence acts as a `barrier' against the formation of thin discs. We compare our findings to the Milky Way's age-velocity dispersion relation and argue that velocity dispersions imprinted already at star formation by the ISM contribute significantly at all times. Finally, we show that observed orbital eccentricities in the Milky Way's thick and thin discs can be explained entirely as imprints by the star-forming ISM, rather than by mergers or secular processes.
8 pages, 5 figures, MNRAS submitted
References in corpus (42)
- The Gaia mission
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- Slow Star Formation in Dense Gas: Evidence and Implications
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The SAMI Galaxy Survey: instrument specification and target selection
- Momentum Injection by Supernovae in the Interstellar Medium
- 4MOST: Project overview and information for the First Call for Proposals
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Thin, thick and dark discs in LCDM
- A First Constraint on the Thick Disk Scale Length: Differential Radial Abundances in K Giants at Galactocentric Radii 4, 8, and 12 kpc
- Clumpy Galaxies in GOODS and GEMS: Massive Analogs of Local Dwarf Irregulars
- Age dissection of the Milky Way discs: red giants in the Kepler field
- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- A simple multigrid scheme for solving the Poisson equation with arbitrary domain boundaries
- Unstable disks at high redshift: Evidence for smooth accretion in galaxy formation
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- Virialization of the inner CGM in the FIRE simulations and implications for galaxy discs, star formation and feedback
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- Age velocity dispersion relations and heating histories in disc galaxies
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- Dissecting simulated disc galaxies II: the age-velocity relation
- Molecular clouds in the Cosmic Snake normal star-forming galaxy 8 billion years ago
- The age-velocity dispersion relation of the Galactic discs from LAMOST-Gaia data
- VINTERGATAN II: the history of the Milky Way told by its mergers
- Inside Out and Upside-Down: The Roles of Gas Cooling and Dynamical Heating in Shaping the Stellar Age-Velocity Relation
- The impact of stellar feedback on the density and velocity structure of the interstellar medium
- Discreteness Effects in Lambda Cold Dark Matter Simulations: A Wavelet-Statistical View
- The bursty origin of the Milky Way thick disc
- Bimodality of [α/Fe]-[Fe/H] distributions is a natural outcome of dissipative collapse and disc growth in Milky Way-type galaxies
- Co-formation of the thin and thick discs revealed by APOGEE-DR16 and Gaia-DR2
- VINTERGATAN III: how to reset the metallicity of the Milky Way
- Larson's scaling laws, and the gravitational instability of clumpy discs at high redshift
- Characterizing gravitational instability in turbulent multi-component galactic discs
- On the Observed Diversity of Star Formation Efficiencies in Giant Molecular Clouds
- From giant clumps to clouds I: the impact of gas fraction evolution on the stability of galactic discs
- IROCKS: Spatially resolved kinematics of z~1 star forming galaxies
- Supernovae feedback propagation: the role of turbulence
- The structural evolution of galaxies with both thin and thick discs
- Radial migration and vertical action in N-body simulations
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- VINTERGATAN IV: Cosmic phases of star formation in Milky Way-like galaxies
- VINTERGATAN-GM: The cosmological imprints of early mergers on Milky-Way-mass galaxies
- Stellar cluster formation in a Milky Way-sized galaxy at z>4 -- I. The proto-globular cluster population and the imposter amongst us
- Dark matter cores in massive high- galaxies formed by baryonic clumps
- High-Resolution Chemical Abundances of the Nyx Stream