The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
arXiv:2204.10327 · doi:10.1093/mnras/stac1151
Abstract
The spatial distribution of mono-abundance populations (MAPs, selected in [Fe/H] and [Mg/Fe]) reflect the chemical and structural evolution in a galaxy and impose strong constraints on galaxy formation models. In this paper, we use APOGEE data to derive the intrinsic density distribution of MAPs in the Milky Way, after carefully considering the survey selection function. We find that a single exponential profile is not a sufficient description of the Milky Way's disc. Both the individual MAPs and the integrated disc exhibit a broken radial density distribution; densities are relatively constant with radius in the inner Galaxy and rapidly decrease beyond the break radius. We fit the intrinsic density distribution as a function of radius and vertical height with a 2D density model that considers both a broken radial profile and radial variation of scale height (i.e., flaring). There is a large variety of structural parameters between different MAPs, indicative of strong structure evolution of the Milky Way. One surprising result is that high- MAPs show the strongest flaring. The young, solar-abundance MAPs present the shortest scale height and least flaring, suggesting recent and ongoing star formation confined to the disc plane. Finally we derive the intrinsic density distribution and corresponding structural parameters of the chemically defined thin and thick discs. The chemical thick and thin discs have local surface mass densities of 5.620.08 and 15.690.32 , respectively, suggesting a massive thick disc with a local surface mass density ratio between thick to thin disc of 36%.
25 pages, 17 figures, accepted to publish in MNRAS
References in corpus (42)
- Modules for Experiments in Stellar Astrophysics (MESA)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- galpy: A Python Library for Galactic Dynamics
- Galactic chemical evolution: Carbon through Zinc
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- The Apache Point Observatory Galactic Evolution Experiment (APOGEE) Spectrographs
- Target Selection for the SDSS-IV APOGEE-2 Survey
- The APOGEE red-clump catalog: Precise distances, velocities, and high-resolution elemental abundances over a large area of the Milky Way's disk
- A First Constraint on the Thick Disk Scale Length: Differential Radial Abundances in K Giants at Galactocentric Radii 4, 8, and 12 kpc
- The GALAH Survey: Observational Overview and Gaia DR1 companion
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- On the Formation of Galactic Thick Disks
- The age-metallicity structure of the Milky Way disk
- The APOGEE Data Release 16 Spectral Line List
- YBC, a stellar bolometric corrections database with variable extinction coefficients: an application to PARSEC isochrones
- Origin of chemically distinct discs in the Auriga cosmological simulations
- The AMBRE Project: chemical evolution models for the Milky Way thick and thin discs
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- New Constraints on the Galactic Bar
- Final Targeting Strategy for the SDSS-IV APOGEE-2S Survey
- Final Targeting Strategy for the SDSS-IV APOGEE-2N Survey
- A radial age gradient in the geometrically thick disk of the Milky Way
- Mapping the Milky Way bulge at high resolution: the 3D dust extinction, CO, and X factor maps
- Quantifying stellar radial migration in an N-body simulation: blurring, churning, and the outer regions of galaxy discs
- Constraining Metallicity-dependent Mixing and Extra Mixing using [C/N] in Alpha-Rich Field Giants
- Dissecting simulated disc galaxies I: the structure of mono-age populations
- Kinematics of the local disk from the RAVE survey and the Gaia first data release
- Chemical gradients in the Milky Way from the RAVE data. II. Giant stars
- Revisiting long-standing puzzles of the Milky Way: the Sun and its vicinity as typical outer disk chemical evolution
- The age-chemical abundance structure of the Galactic disc II: -dichotomy and thick disc formation
- The bimodal [Mg/Fe] versus [Fe/H] bulge sequence as revealed by APOGEE DR14
- Quantifying radial migration in the Milky Way: Inefficient over short timescales but essential to the very outer disc beyond ~15 kpc
- Geometric properties of galactic discs with clumpy episodes
- Scalelength of disc galaxies
- Mapping the Galactic Disk with the LAMOST and Gaia Red Clump Sample VII: the Stellar Disk Structure Revealed by the Mono-abundance Populations
- The Milky Way's bulge star formation history as constrained from its bimodal chemical abundance distribution
- How to bend galaxy disc profiles: the role of halo spin
- Does the Milky Way Obey Spiral Galaxy Scaling Relations?
- On the Flaring of Thick Disc of Galaxies: Insights from Simulations
Cited by in corpus (19)
- A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
- Spectroscopic age estimates for APOGEE red-giant stars: Precise spatial and kinematic trends with age in the Galactic disc
- Unusual integrated metallicity profile of our Milky Way
- Nucleosynthesis of binary-stripped stars
- The formation and survival of the Milky Way's oldest stellar disk
- Observational Constraints of Radial Migration in the Galactic Disc Driven by the Slowing Bar
- The imprint of clump formation at high redshift. II. The chemistry of the bulge
- The Galactic Interstellar Object Population: A Framework for Prediction and Inference
- Disk flaring with TNG50: diversity across Milky Way and M31 analogs
- Comparing bulge RR Lyrae stars with bulge giants -- Insight from 3D kinematics
- Mapping the Milky Way with Gaia Bp/Rp spectra I: Systematic flux corrections and atmospheric parameters for 68 million stars
- 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
- Dynamical mirages: how bar-induced resonant trapping can mimic substructure clustering in dynamical parameter spaces
- Globular clusters in \textsc{OrbIT}: complete dynamical characterisation of the globular cluster population of the Milky Way through updated orbital reconstruction
- A path towards constraining the evolution of the interstellar medium and outflows in the Milky Way using APOGEE
- Mapping the Milky Way with Gaia Bp/Rp spectra-IV: the broken and asymmetric density profile of the stellar disk traced by a large sample of red clumps
- Cosmic Radioactivity and Galactic Chemical Evolution
- The vertical structure of the stellar disk in NGC 551