Hiding its age: the case for a younger bulge
arXiv:1606.04092 · doi:10.1051/0004-6361/201628816
Abstract
The determination of the age of the bulge has led to two contradictory results. On the one side, the color-magnitude diagrams in different bulge fields seem to indicate a uniformly old (10 Gyr) population. On the other side, individual ages derived from dwarfs observed through microlensing events seem to indicate a large spread, from 2 to 13 Gyr. Because the bulge is now recognised as being mainly a boxy peanut-shaped bar, it is suggested that disk stars are one of its main constituents, and therefore also stars with ages significantly younger than 10 Gyr. Other arguments as well point to the fact that the bulge cannot be exclusively old, and in particular cannot be a burst population, as it is usually expected if the bulge was the fossil remnant of a merger phase in the early Galaxy. In the present study, we show that given the range of metallicities observed in the bulge, a uniformly old population would be reflected into a significant spread in color at the turn-off which is not observed. Inversely, we demonstrate that the correlation between age and metallicity expected to hold for the inner disk would conspire to form a color-magnitude diagram with a remarkably small spread in color, thus mimicking the color-magnitude diagram of a uniformly old population. If stars younger than 10 Gyr are part of the bulge, as must be the case if the bulge has been mainly formed through dynamical instabilities in the disk, then a very small spread at the turn-off is expected, as seen in the observations.
11 pages, 11 figures. Accepted for publication in A&A
References in corpus (19)
- The Dartmouth Stellar Evolution Database
- Oxygen, Sodium, Magnesium and Aluminium as tracers of the Galactic Bulge Formation
- Reconstructing the star formation history of the Milky Way disc(s) from chemical abundances
- Stellar Proper Motions in the Galactic Bulge from deep HST ACS/WFC Photometry
- When the Milky Way turned off the lights: APOGEE provides evidence of star formation quenching in our Galaxy
- The origin and evolution of r- and s-process elements in the Milky Way stellar disk
- The Gaia-ESO Survey: metallicity and kinematic trends in the Milky Way bulge
- Composite Bulges: The Coexistence of Classical Bulges and Disky Pseudobulges in S0 and Spiral Galaxies
- Light, Alpha, and Fe-Peak Element Abundances in the Galactic Bulge
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- Before the Bar: Kinematic Detection of A Spheroidal Metal-Poor Bulge Component
- Why the Milky Way's bulge is not only a bar formed from a cold thin disk
- Mapping a stellar disk into a boxy bulge: The outside-in part of the Milky Way bulge formation
- An Observational Guide to Identifying Pseudobulges and Classical Bulges in Disk Galaxies
- The Evolution of Oxygen and Magnesium in the Bulge and Disk of the Milky Way
- The disc origin of the Milky Way bulge
- Heavy elements Ba, La, Ce, Nd, and Eu in 56 Galactic bulge red giants
- First Detection of the White-Dwarf Cooling Sequence of the Galactic Bulge
- On the age of Galactic bulge microlensed dwarf and subgiant stars
Cited by in corpus (36)
- 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
- Chemodynamical history of the Galactic Bulge
- 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
- Chemodynamics of barred galaxies in cosmological simulations: On the Milky Way's quiescent merger history and in-situ bulge
- Timing the Early Assembly of the Milky Way with the H3 Survey
- Star formation history of the Galactic bulge from deep HST imaging of low reddening windows
- Phylogeny of the Milky Way's inner disk and bulge populations: Implications for gas accretion, (the lack of) inside-out thick disk formation, and quenching
- Stars behind bars I: The Milky Way's central stellar populations
- The origin of stellar populations in the Galactic bulge from chemical abundances
- Formation, vertex deviation and age of the Milky Way's bulge: input from a cosmological simulation with a late-forming bar
- Exploring the stellar age distribution of the Milky Way Bulge using APOGEE
- Mapping the stellar age of the Milky Way bulge with the VVV. I. The method
- The Gaia-ESO Survey: low-alpha element stars in the Galactic Bulge
- The Ages of Galactic Bulge Stars with Realistic Uncertainties
- Blanco DECam Bulge Survey (BDBS) II: Project Performance, Data Analysis, and Early Science Results
- What the Milky Way bulge reveals about the initial metallicity gradients in the disc
- Bars and boxy/peanut bulges in thin and thick discs. II. Can bars form in hot thick discs?
- Weighing the two stellar components of the Galactic Bulge
- Timing the Milky Way bar formation and the accompanying radial migration episode
- Discovery of carbon-rich Miras in the Galactic bulge
- Chemically-dissected rotation curves of the Galactic Bulge from Main Sequence proper motions
- HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis
- SiO Masers in the Galactic Bulge and Disk: Kinematics from the BAaDE Survey
- Modeling the chemical enrichment history of the Bulge Fossil Fragment Terzan 5
- VVV WIN 17333349: a low extinction window to probe the far side of the Milky Way bulge
- An Intriguing Globular Cluster in the Galactic Bulge from the VVV Survey
- Impact of distance determinations on Galactic structure. II. Old tracers
- Blanco DECam Bulge Survey (BDBS) V. Cleaning the foreground populations from Galactic bulge colour-magnitude diagrams using Gaia EDR3
- Influence of the Galactic bar on the kinematics of the disc stars with Gaia EDR3 data
- The population of single and binary white dwarfs of the Galactic bulge
- The disc origin of the Milky Way bulge: On the high velocity dispersion of metal-rich stars at low latitude
- Modelling the chemical evolution of the Milky Way
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge
- Observing Double White Dwarfs with the Lunar GW Antenna
- Blanco DECam Bulge Survey (BDBS) IV: Metallicity Distributions and Bulge Structure from 2.6 Million Red Clump Stars
- Rapid early gas accretion for the inner Galactic disc