Origin of the excess of high-energy retrograde stars in the Galactic halo
arXiv:1903.09456 · doi:10.3847/2041-8213/ab0ec0
Abstract
We report on the very low -element abundances of a group of metal-poor stars with high orbital energy and with large retrograde motion in the Milky Way halo, whose excess has been reported recently from metallicity and kinematics. We constructed a sample of halo stars with measured abundances and precise kinematics, including stars with [{{Fe}/{H}}], by crossmatching the Stellar Abundances for Galactic Archaeology database to the second data release of Gaia. Three regions in the energy-angular momentum space have been selected: innermost halo, Gaia Enceladus/Sausage, and high-energy retrograde halo. While the innermost halo and Gaia Enceladus regions have chemical abundances consistent with high- and low- populations in the halo, respectively, chemical abundances of stars in the high-energy retrograde halo are different from the two populations; their [{X}/{Fe}], where X represents Na, Mg, and Ca, are even lower than those in Gaia Enceladus. These abundances, as well as their low mean metallicity, provide a new support for the idea that the retrograde component is dominated by an accreted dwarf galaxy which has a longer star formation timescale and is less massive than Gaia Enceladus/Sausage.
accepted for publication in ApJL
References in corpus (8)
- The Gaia mission
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- galpy: A Python Library for Galactic Dynamics
- Two Stellar Components in the Halo of the Milky Way
- Detection of a 60 Degree-Long Dwarf Galaxy Debris Stream
- A Synoptic Map of Halo Substructures from the Pan-STARRS1 3π Survey
- A box full of chocolates: The rich structure of the nearby stellar halo revealed by Gaia and RAVE
- Halo Substructure in the SDSS-Gaia Catalogue : Streams and Clumps
Cited by in corpus (70)
- 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 Global Dynamical Atlas of the Milky Way mergers: Constraints from Gaia EDR3 based orbits of globular clusters, stellar streams and satellite galaxies
- Reconstructing the Last Major Merger of the Milky Way with the H3 Survey
- The chemical characterisation of halo substructure in the Milky Way based on APOGEE
- Four-hundred Very Metal-Poor Stars Studied with LAMOST and Subaru. II. Elemental abundances
- Selecting accreted populations: metallicity, elemental abundances, and ages of the Gaia-Sausage-Enceladus and Sequoia populations
- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- A Low-Mass Stellar-Debris Stream Associated with a Globular Cluster Pair in the Halo
- Reconstructing the Disrupted Dwarf Galaxy -Sausage/Enceladus Using its Stars and Globular Clusters
- The Southern Stellar Stream Spectroscopic Survey (S5): Chemical Abundances of Seven Stellar Streams
- Elevated r-process enrichment in Gaia Sausage and Sequoia
- The Accreted Nuclear Clusters of the Milky Way
- GASTRO library I: the simulated chemodynamical properties of several GSE-like stellar halos
- A massive mess: When a large dwarf and a Milky Way-like galaxy merge
- Dynamically Tagged Groups of Very Metal-poor Halo Stars from the HK and Hamburg/ESO Surveys
- The Stellar Halo of the Galaxy is Tilted & Doubly Broken
- Evidence of a dwarf galaxy stream populating the inner Milky Way Halo
- Exploring the Galaxy's halo and very metal-weak thick disk with SkyMapper and Gaia DR2
- Substructure in the stellar halo near the Sun. II. Characterisation of independent structures
- Energy wrinkles and phase-space folds of the last major merger
- High-precision chemical abundances of Galactic building blocks. The distinct chemical abundance sequence of Sequoia
- The Pristine survey -- XII: Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy
- The origin of metal-poor stars on prograde disk orbits in FIRE simulations of Milky Way-mass galaxies
- The Complexity of the Cetus Stream Unveiled from the Fusion of STREAMFINDER and StarGO
- Is NGC 5824 the Core of the Progenitor of the Cetus Stream?
- Origin of highly -process-enhanced stars in a cosmological zoom-in simulation of a Milky Way-like galaxy
- Cosmological insights into the assembly of the radial and compact stellar halo of the Milky Way
- The 33 M black hole Gaia BH3 is part of the disrupted ED-2 star cluster
- Metallicity distributions of halo stars: do they trace the Galactic accretion history?
- Targeting Bright Metal-poor Stars in the Disk and Halo Systems of the Galaxy
- The observable properties of galaxy accretion events in Milky Way-like galaxies in the FIRE-2 cosmological simulations
- Star Formation Timescales of the Halo Populations from Asteroseismology and Chemical Abundances
- The stellar halo in Local Group Hestia simulations III. Chemical abundance relations for accreted and in-situ stars
- Probing the Galactic halo with RR Lyrae stars III. The chemical and kinematic properties of the stellar halo
- The nature of the Milky Way's stellar halo revealed by the three integrals of motion
- A Blueprint for the Milky Way's Stellar Populations. III. Spatial Distributions and Population Fractions of Local Halo Stars
- Four-hundred Very Metal-poor Stars Studied with LAMOST and Subaru. III. Dynamically Tagged Groups and Chemodynamical Properties
- Resequencing the Hubble sequence and the quadratic (black hole mass)-(spheroid stellar mass) relation for elliptical galaxies
- Extending the Chemical Reach of the H3 Survey: Detailed Abundances of the Dwarf-galaxy Stellar Stream Wukong/LMS-1
- An ancient double degenerate merger in the Milky Way halo
- A Blueprint for the Milky Way's Stellar Populations. II. Improved Isochrone Calibration in the SDSS and Pan-STARRS Photometric Systems
- Exploring the chemodynamics of metal-poor stellar populations
- Finding -II sibling stars in the Milky Way with the Greedy Optimistic Clustering algorithm
- The Early Merger that Made the Galaxy's Stellar Halo
- Characterisation of local halo building blocks: Thamnos and Sequoia
- A high fidelity Milky Way simulation with Kraken, Gaia-Enceladus, and Sequoia analogues: clues to their accretion histories
- Chemodynamical study of two CEMP-no stars from the Hamburg/ESO Survey
- Searching for Extragalactic Exoplanetary Systems: the Curious Case of BD+20 2457
- G112-43/44: A metal-poor binary star with a unique chemical composition and kinematics like the Helmi streams
- Peeking beneath the precision floor -- II. Probing the chemo-dynamical histories of the potential globular cluster siblings, NGC 288 and NGC 362
- Progress in Nuclear Astrophysics of East and Southeast Asia
- Magnesium isotope ratios in Milky Way and dwarf galaxy stars
- Combining Astrometry and Elemental Abundances: The Case of the Candidate Pre-Gaia Halo Moving Groups G03-37, G18-39, and G21-22
- Fuzzy Cluster Analysis: Application to Determining Metallicities for Very Metal-poor Stars
- Different Sodium enhancements among multiple populations of Milky Way globular clusters
- Globular clusters in \textsc{OrbIT}: complete dynamical characterisation of the globular cluster population of the Milky Way through updated orbital reconstruction
- First Star Survivors as Metal-Rich Halo Stars that Experienced Supernova Explosions in Binary Systems
- J01020100-7122208: an accreted evolved blue straggler that wasn't ejected from a supermassive black hole
- Searching for new Hypervelocity Stars with Gaia DR3 and VLT/FORS2 Spectroscopy
- Main-sequence Turnoff Stars as Probes of the Ancient Galactic Relic: Chemo-dynamical Analysis of a Pilot Sample
- The metal-poorest tail of the Galactic halo: hypothesis on its origin from precise spectral analysis
- Partitioning the Galactic Halo with Gaussian Mixture Models
- The accreted Galaxy: An overview of TESS metal-poor accreted stars candidates
- Gaia DR3 high radial velocity stars: Genuine fast-moving objects or outliers?
- HR-GO II: chemical abundances of low- retrograde dynamically-tagged-groups: Revealing Thamnos as a very metal-poor substructure
- Probing the Milky Way Halo with RR Lyrae Stars from Gaia Data Release 3
- An ancient system hidden in the Galactic plane?
- Unravelling the role of merger histories in the population of In situ stars: linking IllustrisTNG cosmological simulation to H3 survey
- A new member of the Milky Way's family tree: Characterizing the Pontus merger of our Galaxy