Metallicity gradients through disk Instability: A simple model for the Milky Way's boxy bulge
arXiv:1302.1613 · doi:10.1088/2041-8205/766/1/L3
Abstract
Observations show a clear vertical metallicity gradient in the Galactic bulge, which is often taken as a signature of dissipative processes in the formation of a classical bulge. Various evidence shows, however, that the Milky Way is a barred galaxy with a boxy bulge representing the inner three-dimensional part of the bar. Here we show with a secular evolution N-body model that a boxy bulge formed through bar and buckling instabilities can show vertical metallicity gradients similar to the observed gradient, if the initial axisymmetric disk had a comparable radial metallicity gradient. In this framework the range of metallicities in bulge fields constrains the chemical structure of the Galactic disk at early times, before bar formation. Our secular evolution model was previously shown to reproduce inner Galaxy star counts and we show here that it also has cylindrical rotation. We use it to predict a full mean metallicity map across the Galactic bulge from a simple metallicity model for the initial disk. This map shows a general outward gradient on the sky as well as longitudinal perspective asymmetries. We also briefly comment on interpreting metallicity gradient observations in external boxy bulges.
Accepted to ApJ Letters
References in corpus (7)
- ARGOS III: Stellar Populations in the Galactic Bulge of the Milky Way
- Stellar Proper Motions in the Galactic Bulge from deep HST ACS/WFC Photometry
- Tracing the long bar with red-clump giants
- Kinematics at the Edge of the Galactic Bulge: Evidence for Cylindrical Rotation
- The First Detailed Abundances for M giants in the inner Bulge from Infrared Spectroscopy
- Stellar Population Gradients in Bulges along the Hubble Sequence: II. Relations with Galaxy Properties
- Secular evolution in action: central values and radial trends in the stellar populations of boxy bulges
Cited by in corpus (51)
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. VI. Age and abundance structure of the stellar populations in the central sub-kpc of the Milky Way
- Separation of Stellar Populations by an Evolving Bar: Implications for the Bulge of the Milky Way
- The Gaia-ESO Survey: metallicity and kinematic trends in the Milky Way bulge
- The GIRAFFE Inner Bulge Survey (GIBS). I. Survey Description and a kinematical map of the Milky Way bulge
- Light, Alpha, and Fe-Peak Element Abundances in the Galactic Bulge
- The Gaia-ESO Survey: Exploring the complex nature and origins of the Galactic bulge populations
- The disc origin of the Milky Way bulge: Dissecting the chemo-morphological relations using N-body simulations and APOGEE
- Why the Milky Way's bulge is not only a bar formed from a cold thin disk
- APOGEE Kinematics I: Overview of the Kinematics of the Galactic Bulge as Mapped by APOGEE
- Chemodynamical Modelling of the Galactic Bulge and Bar
- Mapping a stellar disk into a boxy bulge: The outside-in part of the Milky Way bulge formation
- The disc origin of the Milky Way bulge
- The Bar and Spiral Arms in the Milky Way: Structure and Kinematics
- Metallicity-dependendent kinematics and morphology of the Milky Way bulge
- Stars behind bars I: The Milky Way's central stellar populations
- Formation, vertex deviation and age of the Milky Way's bulge: input from a cosmological simulation with a late-forming bar
- The inner two degrees of the Milky Way. Evidence of a chemical difference between the Galactic Center and the surrounding inner bulge stellar populations
- Metallicity and kinematics of the bar in-situ
- The Bulge Metallicity Distribution from the APOGEE Survey
- The Metallicity Distribution of the Milky Way Bulge
- Chemical evolution of the inner 2 degrees of the Milky Way bulge: [alpha/Fe] trends and metallicity gradients
- The Gaia-ESO Survey: low-alpha element stars in the Galactic Bulge
- Dynamics for Galactic Archaeology
- The Ages of Galactic Bulge Stars with Realistic Uncertainties
- The stellar populations of the central region of M31
- Kinematics in the Galactic Bulge with APOGEE: II. High-Order Kinematical Moments and Comparison to Extragalactic Bar Diagnostics
- Box/peanut-shaped bulges in action space
- Correlations between kinematics and metallicity in the Galactic bulge: a review
- The BaLROG project - II. Quantifying the influence of bars on the stellar populations of nearby galaxies
- Establishing the level of cylindrical rotation in Boxy/Peanut bulges
- What the Milky Way bulge reveals about the initial metallicity gradients in the disc
- The Milky Way Bulge: Observed properties and a comparison to external galaxies
- The disc origin of the Milky Way bulge: On the necessity of the thick disc
- Metallicity distributions of halo stars: do they trace the Galactic accretion history?
- Was the Milky Way Bulge Formed From The Buckling Disk Instability, Hierarchical Collapse, Accretion of Clumps, or All of the Above?
- Revisiting the Stellar Velocity Ellipsoid - Hubble type relation: observations versus simulations
- Formation of N-rich field stars in the high-density building blocks of the Galactic bulge
- HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis
- Theoretical Models of the Galactic Bulge
- GalMod: a Galactic synthesis population model
- Comparing the properties of the X-shaped bulges of NGC 4710 and the Milky Way with MUSE
- A case against an X-shaped structure in the Milky Way young bulge
- Difference in chemical composition between the bright and faint red clump stars in the Milky Way bulge
- Searching for a kinematic signature of the moderately metal-poor stars in the Milky Way bulge using N-body simulations
- The intrinsic shape of galaxy bulges
- Unravelling stellar populations in the Andromeda Galaxy
- A new look at the kinematics of the bulge from an N-body model
- The Galactic Bulge exploration IV.: RR~Lyrae stars as traces of the Galactic bar -- 3D and 5D analysis, extinction variation
- Stellar populations of bulges at low redshift
- The barred inner Milky Way: dynamical models from surveys
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge