The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
arXiv:1901.00931 · doi:10.1093/mnras/stz104
Abstract
The disc structure of the Milky Way is marked by a chemical dichotomy, with high-alpha and low-alpha abundance sequences, traditionally identified with the geometric thick and thin discs. This identification is aided by the old ages of the high-alpha stars, and lower average ages of the low-alpha ones. Recent large scale surveys such as APOGEE have provided a wealth of data on this chemical structure, including showing that an identification of chemical and geometric thick discs is not exact, but the origin of the chemical dichotomy has remained unclear. Here we demonstrate that a dichotomy arises naturally if the early gas-rich disc fragments, leading to some fraction of the star formation occurring in clumps of the type observed in high-redshift galaxies. These clumps have high star formation rate density. They, therefore, enrich rapidly, moving from the low-alpha to the high-alpha sequence, while more distributed star formation produces the low-alpha sequence. We demonstrate that this model produces a chemically-defined thick disc that has many of the properties of the Milky Way's thick disc. Because clump formation is common in high redshift galaxies, we predict that chemical bimodalities are common in massive galaxies.
Accepted to MNRAS
References in corpus (28)
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- The Hubble Ultra Deep Field
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Rapid formation of exponential disks and bulges at high redshift from the dynamical evolution of clump cluster and chain galaxies
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- Clumpy Galaxies in CANDELS. I. The Definition of UV Clumps and the Fraction of Clumpy Galaxies at 0.5<z<3
- A First Constraint on the Thick Disk Scale Length: Differential Radial Abundances in K Giants at Galactocentric Radii 4, 8, and 12 kpc
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- On the Formation of Galactic Thick Disks
- Constraining the thick disc formation scenario of the Milky Way
- Resolved spectroscopy of gravitationally lensed galaxies: global dynamics and star-forming clumps on ~100pc scales
- The Morphological Diversities Among Star-forming Galaxies at High Redshifts in the Great Observatories Origins Deep Survey (GOODS)
- The AMBRE Project: chemical evolution models for the Milky Way thick and thin discs
- The nature of giant clumps in distant galaxies probed by the anatomy of the Cosmic Snake
- A radial age gradient in the geometrically thick disk of the Milky Way
- The AMBRE project: The thick thin disk and thin thick disk of the Milky Way
- Diverse Structural Evolution at z > 1 in Cosmologically Simulated Galaxies
- Star Formation and Clumps in Cosmological Galaxy Simulations with Radiation Pressure Feedback
- Simulating radiative feedback and star cluster formation in GMCs: II. Mass dependence of cloud destruction and cluster properties
- Clumpy high-z galaxies as a testbed for feedback-regulated galaxy formation
- A forming disk at z~0.6: Collapse of a gaseous disk or major merger remnant?
- Ray-tracing 3D dust radiative transfer with DART-Ray: code upgrade and public release
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- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- Overview of the DESI Milky Way Survey
- Chemical Enrichment and Radial Migration in the Galactic Disk -- the origin of the [ Double Sequence
- VINTERGATAN II: the history of the Milky Way told by its mergers
- Stellar migrations and metal flows -- Chemical evolution of the thin disc of a simulated Milky Way analogous galaxy
- GASTRO library I: the simulated chemodynamical properties of several GSE-like stellar halos
- Shaken, not blown: the gentle baryonic feedback of nearby starburst dwarf galaxies
- A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
- Bimodality of [α/Fe]-[Fe/H] distributions is a natural outcome of dissipative collapse and disc growth in Milky Way-type galaxies
- The age-chemical abundance structure of the Galactic disc II: -dichotomy and thick disc formation
- 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
- Unveiling the time evolution of chemical abundances across the Milky Way disk with APOGEE
- Characterizing epochs of star formation across the Milky Way disc using age-metallicity distributions of GALAH stars
- The tale of the tail -- disentangling the high transverse velocity stars in Gaia DR2
- The K2 Galactic Archaeology Program Data Release 3: Age-abundance patterns in C1-C8 and C10-C18
- Age-chemical abundance structure of the Galaxy I: Evidence for a late accretion event in the outer disc at z ~ 0.6
- The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
- The stellar mass versus stellar metallicity relation of star-forming galaxies at and implications for the evolution of the -enhancement
- The challenge of simultaneously matching the observed diversity of chemical abundance patterns in cosmological hydrodynamical simulations
- The Milky Way's Shell Structure Reveals the Time of a Radial Collision
- Geometric properties of galactic discs with clumpy episodes
- The stellar velocity distribution function in the Milky Way galaxy
- Radial structure and formation of the Milky Way disc
- The GALAH Survey: Chemical Clocks
- From giant clumps to clouds I: the impact of gas fraction evolution on the stability of galactic discs
- The Milky Way's bulge star formation history as constrained from its bimodal chemical abundance distribution
- The distribution of [/Fe] in the Milky Way disc
- From giant clumps to clouds -- II. The emergence of thick disc kinematics from the conditions of star formation in high redshift gas rich galaxies
- [Mg/Fe] ratios in the solar neighbourhood: stellar yields and chemical evolution scenarios
- Chemical Evolution with Radial Mixing Redux: Extending beyond the Solar Neighborhood
- A Swing of the Pendulum: The Chemodynamics of the Local Stellar Halo Indicate Contributions from Several Radial Merger Events
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- The stellar halo in Local Group Hestia simulations III. Chemical abundance relations for accreted and in-situ stars
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- Formation of N-rich field stars in the high-density building blocks of the Galactic bulge
- The APO-K2 Catalog. II. Accurate Stellar Ages for Red Giant Branch Stars across the Milky Way
- An Intermediate-age Alpha-rich Galactic Population in K2
- Universal properties of the high- and low-α disk: small intrinsic abundance scatter and migrating stars
- The imprint of clump formation at high redshift. II. The chemistry of the bulge
- A New Channel of Bulge Formation via The Destruction of Short Bars
- Disc dichotomy signature in the vertical distribution of [Mg/Fe] and the delayed gas infall scenario
- Recovering the origins of the lenticular galaxy NGC 3115 using multi-band imaging
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- Stellar populations and origin of thick disks in AURIGA simulations
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- The chemical enrichment of the Milky Way disk evaluated using conditional abundances
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- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- The ones that got away: chemical tagging of globular cluster-origin stars with Gaia BP/RP spectra
- A Galactic Self-Portrait: Density Structure and Integrated Properties of the Milky Way Disk
- Stellar Migration and Chemical Enrichment in the Milky Way Disc: A Hybrid Model
- The building blocks of the Milky Way halo using APOGEE and Gaia -- or -- Is the Galaxy a typical galaxy?
- The Milky Way in context: The formation of galactic discs and chemical sequences from a cosmological perspective
- Inferring Galactic Parameters from Chemical Abundances: A Multi-Star Approach
- Towards Understanding the Milky Way's Typicality: Assessing the Chemodynamics of M31's Bulge & Bar, Thick & Thin Discs
- Turning Points in the Age-Metallicity Relations -- Created by Late Satellite Infall and Enhanced by Radial Migration