On the stellar halo metallicity profile of Milky Way-like galaxies in the Auriga simulations
arXiv:1512.03064 · doi:10.1093/mnrasl/slw052
Abstract
A recent observational study of haloes of nearby Milky Way-like galaxies shows that only half (four out of eight) of the current sample exhibits strong negative metallicity ([Fe/H]) gradients. This is at odds with predictions from hydrodynamical simulations where such gradients are ubiquitous. In this Letter, we use high resolution cosmological hydrodynamical simulations to study the [Fe/H] distribution of galactic haloes. We find that kinematically selected stellar haloes, including both in-situ and accreted particles, have an oblate [Fe/H] distribution. Spherical [Fe/H] radial profiles show strong negative gradients within 100 kpc, in agreement with previous numerical results. However, the projected median [Fe/H] profiles along the galactic disc minor axis, typically obtained in observations, are significantly flatter. The median [Fe/H] values at a given radius are larger for the spherical profiles than for the minor axis profiles by as much as 0.4 dex within the inner 50 kpc. Similar results are obtained if only the accreted stellar component is considered indicating that the differences between spherical and minor axis profiles are not purely driven by heated disc star particles formed in situ. Our study highlights the importance of performing careful comparisons between models and observations of halo [Fe/H] distributions.
6 pages, 4 figures. Accepted for publication in MNRAS Letters; very minor edits to match the accepted version
References in corpus (7)
- The Dual Origin of Stellar Halos
- The Galaxy and its stellar halo: insights on their formation from a hybrid cosmological approach
- Vertical disc heating in Milky Way-sized galaxies in a cosmological context
- Building Late-Type Spiral Galaxies by In-Situ and Ex-Situ Star Formation
- Global Properties of M31's Stellar Halo from the SPLASH Survey: II. Metallicity Profile
- The stability of stellar disks in Milky-Way sized dark matter halos
- Detection of a distinct metal-poor stellar halo in the early-type galaxy NGC 3115
Cited by in corpus (41)
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- Magnetic field formation in the Milky Way-like disk galaxies of the Auriga project
- The Auriga Stellar Haloes: Connecting stellar population properties with accretion and merging history
- Diverse Stellar Haloes in Nearby Milky Way-Mass Disc Galaxies
- Gas accretion and galactic fountain flows in the Auriga cosmological simulations: angular momentum and metal re-distribution
- The ARTEMIS simulations: stellar haloes of Milky Way-mass galaxies
- The masses and metallicities of stellar haloes reflect galactic merger histories
- The mass of the Milky Way out to 100 kpc using halo stars
- A tale of two populations: surviving and destroyed dwarf galaxies and the build up of the Milky Way's stellar halo
- Preparing for low surface brightness science with the Vera C. Rubin Observatory: characterisation of tidal features from mock images
- Galaxies grow their bulges and black holes in diverse ways
- Lessons from the Auriga discs: The hunt for the Milky Way's ex-situ disc is not yet over
- Aurigaia: mock Gaia DR2 stellar catalogues from the Auriga cosmological simulations
- The Edge of the Galaxy
- The Saga of M81: Global View of a Massive Stellar Halo in Formation
- The aftermath of the Great Collision between our Galaxy and the Large Magellanic Cloud
- Metal-poor stars observed with the automated planet finder telescope. I. Discovery of five carbon-enhanced metal-poor stars from LAMOST
- WARPFIELD Population Synthesis: The physics of (extra-)Galactic star formation and feedback driven cloud structure and emission from sub-to-kpc scales
- Radiative transfer with POLARIS. II.: Modeling of synthetic Galactic synchrotron observations
- DM halo morphological types of MW-like galaxies in the TNG50 simulation: Simple, Twisted, or Stretched
- The stellar halo in Local Group Hestia simulations I. The in-situ component and the effect of mergers
- Linking the brightest stellar streams with the accretion history of Milky Way-like galaxies
- The stellar halo in Local Group Hestia simulations III. Chemical abundance relations for accreted and in-situ stars
- Comparing semi-analytic particle tagging and hydrodynamical simulations of the Milky Way's stellar halo
- Inferring the Morphology of Stellar Distribution in TNG50: Twisted and Twisted-Stretched shapes
- The Origin of the Milky Way's Halo Age Distribution
- Saying Hallo to M94's Stellar Halo: Investigating the Accretion History of the Largest Pseudobulge Host in the Local Universe
- Origins of the Evil Eye: M64's Stellar Halo Reveals the Recent Accretion of an SMC-mass Satellite
- A formation timescale of the Galactic halo from Mg isotopes in dwarf stars
- The role of accreted and in situ populations in shaping the stellar halos of low-mass galaxies
- Quantifying the intrinsic variability due to randomness of the Auriga galaxy formation model
- On the robustness of the velocity anisotropy parameter in probing the stellar kinematics in Milky Way like galaxies: Take away from TNG50 simulation
- AuriDESI: Mock Catalogues for the DESI Milky Way Survey
- First resolved stellar halo kinematics of a MW-mass galaxy outside the Local Group: A flat counter-rotating halo in NGC 4945
- Simulations of the accreted stellar halos of low-mass field galaxies
- Applying machine learning to Galactic Archaeology: how well can we recover the origin of stars in Milky Way-like galaxies?
- Auriga Streams II: orbital properties of tidally disrupting satellites of Milky Way-mass galaxies
- Auriga Superstars: Improving the resolution and fidelity of stellar dynamics in cosmological galaxy simulations
- Stellar halos of bright central galaxies II: Scaling relations, colors and metallicity evolution with redshift
- Machine Learning for Galactic Archaeology: A chemistry-based neural network method for identification of accreted disc stars
- Unravelling the role of merger histories in the population of In situ stars: linking IllustrisTNG cosmological simulation to H3 survey