The Poor Old Heart of the Milky Way
arXiv:2209.02722 · doi:10.3847/1538-4357/ac9e01
Abstract
Massive disk galaxies like our Milky Way should host an ancient, metal-poor, and centrally concentrated stellar population. This population reflects the star formation and enrichment in the few most massive progenitor components that coalesced at high redshift to form the proto-Galaxy. While metal-poor stars are known to reside in the inner few kiloparsecs of our Galaxy, current data do not yet provide a comprehensive picture of such a metal-poor "heart" of the Milky Way. We use information from Gaia DR3, especially the XP spectra, to construct a sample of 2 million bright (BP mag) giant stars within of the Galactic Center with robust [M/H] estimates, [M/H] . For most sample members we can calculate orbits based on Gaia RVS velocities and astrometry. This sample reveals an extensive, ancient, and metal-poor population that includes stars with [M/H] , representing a stellar mass of M. The spatial distribution of these [M/H] stars has a Gaussian extent of only kpc around the Galactic center, with most of these orbits being confined to the inner Galaxy. At high orbital eccentricities, there is clear evidence for accreted halo stars in their pericentral orbit phase. Stars with [M/H] show no net rotation, whereas those with [M/H] are rotation dominated. Most of the tightly bound stars show -enhancement and [Al/Fe]-[Mn/Fe] abundance patterns expected for an origin in the more massive portions of the proto-Galaxy. These central, metal-poor stars most likely predate the oldest part of the disk ( Gyrs), which implies that they formed at , forging the proto-Milky Way.
21 pages, 9 figures, submitted to ApJ
References in corpus (31)
- galpy: A Python Library for Galactic Dynamics
- Gaia Early Data Release 3: Parallax bias versus magnitude, colour, and position
- The GALAH Survey: Scientific Motivation
- The GALAH+ Survey: Third Data Release
- Evidence for Two Early Accretion Events That Built the Milky Way Stellar Halo
- Evidence from the H3 Survey that the Stellar Halo is Entirely Comprised of Substructure
- The Dual Origin of Stellar Halos
- A time-resolved picture of our Milky Way's early formation history
- Improved GRAVITY astrometric accuracy from modeling of optical aberrations
- Building Late-Type Spiral Galaxies by In-Situ and Ex-Situ Star Formation
- The Global Dynamical Atlas of the Milky Way mergers: Constraints from Gaia EDR3 based orbits of globular clusters, stellar streams and satellite galaxies
- Reverse engineering the Milky Way
- Reconstructing the Last Major Merger of the Milky Way with the H3 Survey
- APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
- Discovery of a New, Polar-Orbiting Debris Stream in the Milky Way Stellar Halo
- Timing the Early Assembly of the Milky Way with the H3 Survey
- Internal calibration of Gaia BP/RP low-resolution spectra
- The Best and Brightest Metal-Poor Stars
- A Low-Mass Stellar-Debris Stream Associated with a Globular Cluster Pair in the Halo
- Orbital Clustering Identifies the Origins of Galactic Stellar Streams
- The Pristine Inner Galaxy Survey (PIGS) I: Tracing the kinematics of metal-poor stars in the Galactic bulge
- Evidence from Disrupted Halo Dwarfs that -process Enrichment via Neutron Star Mergers is Delayed by Myrs
- The Pristine Inner Galaxy Survey (PIGS) II: Uncovering the most metal-poor populations in the inner Milky Way
- Stellar Abundance Maps of the Milky Way Disk
- The Bulge Metallicity Distribution from the APOGEE Survey
- The Kinematic Properties of Milky Way Stellar Halo Populations
- The COMBS Survey -- II. Distinguishing the Metal-Poor Bulge from the Halo Interlopers
- Stellar Metallicities from SkyMapper Photometry II: Precise photometric metallicities of 280,000 giant stars with [Fe/H] in the Milky Way
- Selection Functions in Astronomical Data Modeling, with the Space Density of White Dwarfs as Worked Example
- Reconstructing the Accretion History of the Galactic Stellar Halo from Chemical Abundance Ratio Distributions
- The Most Metal-poor Stars in the Inner Bulge
Cited by in corpus (54)
- Parameters of 220 million stars from Gaia BP/RP spectra
- Robust Data-driven Metallicities for 175 Million Stars from Gaia XP Spectra
- StarHorse results for spectroscopic surveys + Gaia DR3: Chrono-chemical populations in the solar vicinity, the genuine thick disk, and young-alpha rich stars
- Galactic Archaeology with Gaia
- Nitrogen enrichment and clustered star formation at the dawn of the Galaxy
- Stellar halo substructure generated by bar resonances
- Unusual integrated metallicity profile of our Milky Way
- The Pristine survey -- XXIII. Data Release 1 and an all-sky metallicity catalogue based on Gaia DR3 BP/RP spectro-photometry
- Towards an astronomical foundation model for stars with a Transformer-based model
- The Three-Phase Evolution of the Milky Way
- The impact of early massive mergers on the chemical evolution of Milky Way-like galaxies: insights from NIHAO-UHD simulations
- Formation of Galactic Disks I: Why Did the Milky Way's Disk Form Unusually Early?
- Estimating the selection function of Gaia DR3 sub-samples
- Transferring spectroscopic stellar labels to 217 million Gaia DR3 XP stars with SHBoost
- Distant Echoes of the Milky Way's Last Major Merger
- The formation and survival of the Milky Way's oldest stellar disk
- Hunting for C-rich long-period variable stars in the Milky Way's bar-bulge using unsupervised classification of Gaia BP/RP spectra
- Exploring the diversity and similarity of radially anisotropic Milky Way-like stellar haloes: implications for disrupted dwarf galaxy searches
- 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
- Taking the Milky Way for a spin: disc formation in the ARTEMIS simulations
- Photometric metallicity for 694233 Galactic giant stars from Gaia DR3 synthetic Stromgren photometry. Metallicity distribution functions of halo sub-structures
- The Pristine Inner Galaxy Survey (PIGS) VII: a discovery of the first inner Galaxy CEMP-r/s star
- Predicting metallicities and carbon abundances from Gaia XP spectra for (carbon-enhanced) metal-poor stars
- High-speed stars. II. An unbound star, young stars, bulge metal-poor stars, and Aurora candidates
- Uranium Abundances and Ages of -process Enhanced Stars with Novel U II Lines
- Unravelling the mass spectrum of destroyed dwarf galaxies with the metallicity distribution function
- The Pristine survey -- XX: GTC follow-up observations of extremely metal-poor stars identified from Pristine and LAMOST
- Homogeneous Stellar Atmospheric Parameters and 22 Elemental Abundances for FGK Stars Derived From LAMOST Low-resolution Spectra with DD-Payne
- Astrometry in crowded fields towards the Galactic Bulge
- The Pristine survey: XXV. The very metal-poor Galaxy: Chemodynamics through the follow-up of the Pristine-Gaia synthetic catalogue
- The first comprehensive Milky Way stellar mock catalogue for the Chinese Space Station Telescope Survey Camera
- Untangling the Sources of Abundance Dispersion in Low-Metallicity Stars
- Could very low-metallicity stars with rotation-dominated orbits have been shepherded by the bar?
- Metallicity and -abundance for 48 million stars in low-extinction regions in the Milky Way
- Bar-driven dispersal of Galactic substructure
- The S-PLUS Ultra-Short Survey: first data release
- Mapping the Milky Way with Gaia Bp/Rp spectra I: Systematic flux corrections and atmospheric parameters for 68 million stars
- Deciphering the Milky Way disc formation time encrypted in the bar chrono-kinematics
- Exploring the ex-situ components within Gaia DR3
- The ones that got away: chemical tagging of globular cluster-origin stars with Gaia BP/RP spectra
- Dynamical mirages: how bar-induced resonant trapping can mimic substructure clustering in dynamical parameter spaces
- The Pristine Survey -- XXVII. Journey to the Galactic outskirts -- Mapping the outer halo red giant stars down to the very metal-poor end
- Globular clusters in \textsc{OrbIT}: complete dynamical characterisation of the globular cluster population of the Milky Way through updated orbital reconstruction
- The dawn is quiet here: Rise in [/Fe] is a signature of massive gas accretion that fueled proto-Milky Way
- A slow spin to win -- the gradual evolution of the proto-Galaxy to the old disc
- Unveiling Galactic substructures with M Giant stars: A kinematic and chemical study based on LAMOST DR9, Gaia DR3 and APOGEE DR17
- Milky Way's Metal-Poor Stars display Chemical Transition near the Solar Radius
- The Spheroidal Bulge of the Milky Way: Chemodynamically Distinct from the Inner-Thick Disc and Bar
- The metal-poor tail of the APOGEE survey I. Uncovering [Fe/H] < -2.5 stars from the inner Galaxy to the Magellanic Clouds
- The Stellar Abundances and Galactic Evolution Survey (SAGES). IV. Surface Gravity Estimation and Giant-Dwarf Separation with the DDO51 Filter
- 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
- SF-R You Sure? The Conflicting Role of Star Formation Rates in Constraining the Evolution of Milky Way Analogues in Cosmological Simulations
- Dynamical properties of high-[Mg/Fe] stars in the Milky Way bar region