On the Flaring of Thick Disc of Galaxies: Insights from Simulations
arXiv:2012.02741 · doi:10.1093/mnras/staa3906
Abstract
Using simulated galaxies in their cosmological context, we analyse how the flaring of mono-age populations (MAPs) influences the flaring and the age structure of geometrically-defined thick discs. We also explore under which circumstances the geometric thin and thick discs are meaningfully distinct components, or are part of a single continuous structure as in the Milky Way. We find that flat thick discs are created when MAPs barely flare or have low surface density at the radius where they start flaring. When looking at the vertical distribution of MAPs, these galaxies show a continuous thin/thick structure. They also have radial age gradients and tend to have quiescent merger histories. Those characteristics are consistent with what is observed in the Milky Way. Flared thick discs, on the other hand, are created when the MAPs that flare have a high surface density at the radius where they start flaring. The thick discs' scale-heights can either be dominated by multiple MAPs or just a few, depending on the mass and scale-height distribution of the MAPs. In a large fraction of these galaxies, thin and thick discs are clearly distinct structures. Finally, flared thick discs have diverse radial age gradients and merger histories, with galaxies that are more massive or that have undergone massive mergers showing flatter age radial gradients in their thick disc.
15 pages, 14 figures. Accepted to MNRAS
References in corpus (24)
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- Disruption of Dark Matter Substructure: Fact or Fiction?
- Thin, thick and dark discs in LCDM
- On the Formation of Galactic Thick Disks
- Constraining the thick disc formation scenario of the Milky Way
- The Structure and Dynamical Evolution of the Stellar Disk of a Simulated Milky Way-Mass Galaxy
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- The effect of radial migration on galactic disks
- Dissecting simulated disc galaxies II: the age-velocity relation
- The Fornax 3D project: unveiling the thick disk origin in FCC 170: signs of accretion?
- A radial age gradient in the geometrically thick disk of the Milky Way
- Flare in the Galactic stellar outer disc detected in SDSS-SEGUE data
- The Catalog of Edge-on Disk Galaxies from SDSS. Part I: the catalog and the Structural Parameters of Stellar Disks
- Lick Indices in the Thin and Thick Disks of Edge-On Disk Galaxies
- Ages and masses of million Galactic disk main sequence turn-off and sub-giant stars from the LAMOST Galactic spectroscopic surveys
- Dissecting simulated disc galaxies I: the structure of mono-age populations
- The relationship between mono-abundance and mono-age stellar populations in the Milky Way disk
- An HST/ACS investigation of the spatial and chemical structure and sub-structure of NGC 891, a Milky Way analogue
- The Fornax 3D project: Thick disks in a cluster environment
- Evidence for the concurrent growth of thick discs and central mass concentrations from SG imaging
- Thick Disks in the Hubble Space Telescope Frontier Fields
- Yule-Simpson's paradox in Galactic Archaeology
- Does the stellar distribution flare? A comparison of stellar scale heights with LAB HI data
- A monolithic collapse origin for the thin/thick disc structure of ESO 243-49
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- The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
- Mapping the Galactic Disk with the LAMOST and Gaia Red Clump Sample VII: the Stellar Disk Structure Revealed by the Mono-abundance Populations
- The DUVET Survey: Resolved Maps of Star Formation Driven Outflows in a Compact, Starbursting Disk Galaxy
- NGC 5746: formation history of a massive disc-dominated galaxy
- The stellar halo in Local Group Hestia simulations I. The in-situ component and the effect of mergers
- Stellar populations and origin of thick disks in AURIGA simulations
- Disk flaring with TNG50: diversity across Milky Way and M31 analogs
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- A Galactic Self-Portrait: Density Structure and Integrated Properties of the Milky Way Disk
- A prediction on the age of thick discs as a function of the stellar mass of the host galaxy
- Exploring the outskirts of the EAGLE disc galaxies
- Dynamical interplay of disc thickness and the interstellar gas: implication for the longevity of spiral density waves
- No memory of past warps in the vertical density structure of galaxies