Was the Milky Way Bulge Formed From The Buckling Disk Instability, Hierarchical Collapse, Accretion of Clumps, or All of the Above?
arXiv:1708.01262 · doi:10.1017/pasa.2017.32
Abstract
The assembly of the Milky Way bulge is an old topic in astronomy, one now in a period of renewed and rapid development. The dominant scenario for bulge formation is that of the Milky Way as a nearly pure disk galaxy, with the inner disk having formed a bar and buckled. This can potentially explain virtually all bulge stars with [Fe/H] <~ -1.0, comprising 95% of the stellar population. The evidence is the incredible success in N-body models of this type in making meaningful predictions, such as the rotation curve and velocity dispersion measured from radial velocities, and the spatial morphologies of the peanut/X-shape and the long bar. The classical bulge scenario remains viable for stars with [Fe/H] <~ -1.0 and potentially a minority of the other stars. A classical bulge is expected from Lambda-CDM cosmological simulations, can accentuate the properties of an existing bar in a hybrid system, and is most consistent with the bulge abundance trends such as [Mg/Fe], which are elevated relative to both the thin and thick disks. Finally, the clumpy-galaxy scenario is considered, as it is the correct description of most Milky Way precursors given observations of high-redshift galaxies. Simulations predict that these star-forming clumps will sometimes migrate to the centres of galaxies where they may form a bulge, and galaxies often include a bulge clump as well. They will possibly form a bar with properties consistent with those of the Milky Way, such as the exponential profile and metallicity gradient. Given the relative successes of these scenarios, the Milky Way bulge is plausibly of composite origin, with a classical bulge and/or inner halo numerically dominant for stars with [Fe/H] <~ -1.0, a buckling thick disk for stars with -1.0 <~ [Fe/H] <~ -0.50 perhaps descended from the clumpy galaxy phase, and a buckling thin disk for stars with [Fe/H] >~ -0.50.
13 pages, 5 figures, accepted for publication in PASA
References in corpus (17)
- The UKIDSS Galactic Plane Survey
- The rapid formation a large rotating disk galaxy three billion years after the Big Bang
- Dynamical modelling of the Galactic bulge and bar: the Milky Way's bar pattern speed, stellar, and dark matter mass distribution
- The Structure of the Milky Way's Bar Outside the Bulge
- Clumpy Galaxies in CANDELS. I. The Definition of UV Clumps and the Fraction of Clumpy Galaxies at 0.5<z<3
- Made-to-Measure models of the Galactic Box/Peanut bulge: stellar and total mass in the bulge region
- Modelling the Galactic bar using OGLE-II Red Clump Giant Stars
- ARGOS II: The Galactic Bulge Survey
- Bar-driven evolution and quenching of spiral galaxies in cosmological simulations
- Peanuts, brezels and bananas: food for thought on the orbital structure of the Galactic bulge
- Atypical Mg-poor Milky Way field stars with globular cluster second-generation like chemical patterns
- The Gaia-ESO Survey: the most metal-poor stars in the Galactic bulge
- Metallicity-dependendent kinematics and morphology of the Milky Way bulge
- The X-Shaped Milky Way Bulge in OGLE-III Photometry and in N-Body Models
- The Stellar Halo in the Inner Milky Way: Predicted Shape and Kinematics
- Kinematics in the Galactic Bulge with APOGEE: II. High-Order Kinematical Moments and Comparison to Extragalactic Bar Diagnostics
- Properties of thick discs formed in clumpy galaxies
Cited by in corpus (16)
- A Comparative Analysis of the Chemical Compositions of Gaia-Enceladus/Sausage and Milky Way Satellites using APOGEE
- The Milky Way's bulge star formation history as constrained from its bimodal chemical abundance distribution
- Blanco DECam Bulge Survey (BDBS) II: Project Performance, Data Analysis, and Early Science Results
- The imprint of clump formation at high redshift. II. The chemistry of the bulge
- The Globular Cluster Origin of the Milky Way Outer Bulge: Evidence from Sodium Bimodality
- HERBS II: Detailed chemical compositions of Galactic bulge stars
- Blanco DECam Bulge Survey (BDBS) III: A new view of the double red clump in the Milky Way bulge through luminosity and color distribution
- Difference in chemical composition between the bright and faint red clump stars in the Milky Way bulge
- Potential Black Hole Seeding of the Spiral Galaxy NGC 4424 via an Infalling Star Cluster
- Galactic resonance rings. Modelling of motions in the wide solar neighborhood
- High-resolution near-infrared spectroscopy of globular cluster and field stars toward the Galactic bulge
- Is Terzan 5 the remnant of a building block of the Galactic bulge? Evidence from APOGEE
- Influence of the Galactic bar on the kinematics of the disc stars with Gaia EDR3 data
- On the genesis of spiral galaxies -- Classical and pseudo bulges as extremities of a continuous sequence
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge
- Probing the millisecond pulsar origin of the -ray excess in the Galactic centre with LISA