Galactic Halo Stars in Phase Space :A Hint of Satellite Accretion?
arXiv:astro-ph/0301596 · doi:10.1086/374306
Abstract
The present day chemical and dynamical properties of the Milky Way bear the imprint of the Galaxy's formation and evolutionary history. One of the most enduring and critical debates surrounding Galactic evolution is that regarding the competition between ``satellite accretion'' and ``monolithic collapse''; the apparent strong correlation between orbital eccentricity and metallicity of halo stars was originally used as supporting evidence for the latter. While modern-day unbiased samples no longer support the claims for a significant correlation, recent evidence has been presented by Chiba & Beers (2000,AJ,119,2843) for the existence of a minor population of high-eccentricity metal-deficient halo stars. It has been suggested that these stars represent the signature of a rapid (if minor) collapse phase in the Galaxy's history. Employing velocity- and integrals of motion-phase space projections of these stars, coupled with a series of N-body/Smoothed Particle Hydrodynamic (SPH) chemodynamical simulations, we suggest an alternative mechanism for creating such stars may be the recent accretion of a polar orbit dwarf galaxy.
12 pages(incl. figures). Accepted for publication in ApJ letters section
References in corpus (2)
Cited by in corpus (60)
- The merger that led to the formation of the Milky Way's inner stellar halo and thick disk
- Tracing Galaxy Formation with Stellar Halos I: Methods
- Evidence for Two Early Accretion Events That Built the Milky Way Stellar Halo
- Streams, substructures and the early history of the Milky Way
- In disguise or out of reach: first clues about in-situ and accreted stars in the stellar halo of the Milky Way from Gaia DR2
- The Dual Origin of Stellar Halos
- Structural Parameters of Thin and Thick Disks in Edge-On Disk Galaxies
- The origin of accreted stellar halo populations in the Milky Way using APOGEE, , and the EAGLE simulations
- The birth of the Milky Way as uncovered by accurate stellar ages with Gaia
- The stellar halo of the Galaxy
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- Kinematics of SDSS subdwarfs: Structure and substructure of the Milky Way halo
- Dynamical Relics of the Ancient Galactic Halo
- Accretion relicts in the solar neighbourhood: debris from omegaCen's parent galaxy
- The shape of the Galactic halo with DR2 RR Lyrae. Anatomy of an ancient major merger
- The origin of galactic metal-rich stellar halo components with highly eccentric orbits
- Phase-Space Distributions of Chemical Abundances in Milky Way-type Galaxy Halos
- Sausage & Mash: The dual origin of the Galactic thick disc and halo from the gas-rich Gaia-Enceladus-Sausage merger
- The Extragalactic Origin of the Arcturus Group
- A box full of chocolates: The rich structure of the nearby stellar halo revealed by Gaia and RAVE
- The Emergence of the Thick Disk in a CDM Universe II: Colors and Abundance Patterns
- Timing the Early Assembly of the Milky Way with the H3 Survey
- Chemo-kinematics of the RR Lyrae: the halo and the disc
- The Chemical Properties of Milky Way and M31 Globular Clusters: I. A Comparative Study
- Fashionably Late? Building up the Milky Way's Inner Halo
- Elevated r-process enrichment in Gaia Sausage and Sequoia
- The Kinematics of Thick Disks in External Galaxies
- Galactic Archaeology with Gaia
- Stellar Halo Constraints on Simulated Late Type Galaxies
- Galactic Archeology with the AEGIS Survey: The Evolution of Carbon and Iron in the Galactic Halo
- Galactic Chemical Evolution
- Reviving old controversies: is the early Galaxy flat or round? Investigations into the early phases of the Milky Way formation through stellar kinematics and chemical abundances
- Unveiling the Distinct Formation Pathways of the Inner and Outer Discs of the Milky Way with Bayesian Machine Learning
- Chasing the impact of the Gaia-Sausage-Enceladus merger on the formation of the Milky Way thick disc
- Constraints on the assembly history of the Milky Way's smooth, diffuse stellar halo from the metallicity-dependent, radially-dominated velocity anisotropy profiles probed with K giants and BHB stars using LAMOST, SDSS/SEGUE, and Gaia
- The tale of the tail -- disentangling the high transverse velocity stars in Gaia DR2
- Energy wrinkles and phase-space folds of the last major merger
- The INT/WFC survey of the Monoceros Ring: Accretion origin or Galactic Anomaly?
- Identifying Sagittarius Stream Stars By Their APOGEE Chemical Abundance Signatures
- Contrasting the chemical evolution of the Milky Way and Andromeda galaxies
- Mapping Substructures in Dark Matter Halos
- Lithium and Beryllium in the Gaia-Enceladus Galaxy
- The impact of early massive mergers on the chemical evolution of Milky Way-like galaxies: insights from NIHAO-UHD simulations
- Chemodynamical analysis of bulge stars for simulated disc galaxies
- Local RR Lyrae Stars: native and alien
- The dark matter component of the Gaia radially anisotropic substructure
- Mapping the anisotropic Galactic stellar halo with Blue Horizontal Branch stars
- Reading the CARDs: the Imprint of Accretion History in the Chemical Abundances of the Milky Way's Stellar Halo
- The stellar halo in Local Group Hestia simulations II. The accreted component
- The impact of two massive early accretion events in a Milky Way-like galaxy: repercussions for the buildup of the stellar disc and halo
- Chronology of the chemical enrichment of the old Galactic stellar populations
- Substructures, Resonances and debris streams
- Explaining the chemical trajectories of accreted and in-situ halo stars of the Milky Way
- Exploring the chemodynamics of metal-poor stellar populations
- A high fidelity Milky Way simulation with Kraken, Gaia-Enceladus, and Sequoia analogues: clues to their accretion histories
- Constraining gas metal mixing strength in simulations using observations of the Milky Way's disc
- Deciphering the Kinematic Substructure of Local Dark Matter with LAMOST K Giants
- The Canis Major Dwarf Galaxy
- The metal-poorest tail of the Galactic halo: hypothesis on its origin from precise spectral analysis
- Demonstration of Plate Analysis, an algorithm for precise relative astrometry