Age Dating the Galactic Bar with the Nuclear Stellar Disc
arXiv:1909.07548 · doi:10.1093/mnras/staa140
Abstract
From the decades of the theoretical studies, it is well known that the formation of the bar triggers the gas funnelling into the central sub-kpc region and leads to the formation of a kinematically cold nuclear stellar disc (NSD). We demonstrate that this mechanism can be used to identify the formation epoch of the Galactic bar, using an N-body/hydrodynamics simulation of an isolated Milky Way-like galaxy. As shown in many previous literature, our simulation shows that the bar formation triggers an intense star formation for ~1 Gyr in the central region, and forms a NSD. As a result, the oldest age limit of the NSD is relatively sharp, and the oldest population becomes similar to the age of the bar. Therefore, the age distribution of the NSD tells us the formation epoch of the bar. We discuss that a major challenge in measuring the age distribution of the NSD in the Milky Way is contamination from other non-negligible stellar components in the central region, such as a classical bulge component. We demonstrate that because the NSD is kinematically colder than the other stellar populations in the Galactic central region, the NSD population can be kinematically distinguished from the other stellar populations, if the 3D velocity of tracer stars are accurately measured. Hence, in addition to the line-of-sight velocities from spectroscopic surveys, the accurate measurements of the transverse velocities of stars are necessary, and hence the near-infrared space astrometry mission, JASMINE, would play a crutial role to identify the formation epoch of the Galactic bar. We also discuss that the accuracy of stellar age estimation is also crucial to measure the oldest limit of the NSD stellar population.
accepted for publication in MNRAS
References in corpus (28)
- The Gaia mission
- 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
- Photo-astrometric distances, extinctions, and astrophysical parameters for Gaia DR2 stars brighter than G = 18
- Star Formation in the Central 400 pc of the Milky Way: Evidence for a Population of Massive YSOs
- Life in the fast lane: a direct view of the dynamics, formation, and evolution of the Milky Way's bar
- VIRAC: The VVV Infrared Astrometric Catalogue
- The pattern speed of the Milky Way bar from transverse velocities
- ARGOS II: The Galactic Bulge Survey
- Bar quenching in gas-rich galaxies
- Initial conditions for disc galaxies
- The formation of stellar nuclear discs in bar-induced gas inflows
- Effects of Gas on Formation and Evolution of Stellar Bars and Nuclear Rings in Disk Galaxies
- The chemical evolution of a Milky Way-like galaxy: the importance of a cosmologically motivated infall law
- Carbon-Rich Mira Variables: Kinematics and Absolute Magnitudes
- A lack of classical Cepheids in the inner part of the Galactic disk
- Transverse kinematics of the Galactic bar-bulge from VVV and Gaia
- The Mass Dependence of Star Formation Histories in Barred Spiral Galaxies
- The distribution of stellar population age in galactic bars
- Redistribution of Stars and Gas in the Star Formation Deserts of Barred Galaxies
- Eventful Evolution of Giant Molecular Clouds in Dynamically Evolving Spiral Arms
- Nuclear Star-Forming Ring of the Milky Way: Simulations
- Kinematics of classical Cepheids in the Nuclear Stellar Disk
- Milky Way's Thick and Thin disk: Is there distinct thick disk?
- Formation of young boxy/peanut bulges in ringed barred galaxies
- Bars & boxy/peanut bulges in thin & thick discs: I. Morphology and line-of-sight velocities of a fiducial model
- Predicted Stellar Kinematics of a Kiloparsec-Scale Nuclear Disc (or Ring) in the Milky Way
- Voyage 2050 White Paper: All-Sky Visible and Near Infrared Space Astrometry
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- Chemodynamics of barred galaxies in cosmological simulations: On the Milky Way's quiescent merger history and in-situ bulge
- Simulations of the Milky Way's central molecular zone -- II. Star formation
- A JWST investigation into the bar fraction at redshifts 1 < z < 3
- Gas Dynamics in the Galaxy: Total Mass Distribution and the Bar Pattern Speed
- The Milky Way's nuclear stellar disc: A dynamically cool and metal-rich component formed from the Central Molecular Zone?
- Jeans modelling of the Milky Way's nuclear stellar disc
- Galactic Bar Resonances Inferred from Kinematically Hot Stars in Gaia EDR3
- NGC 5746: formation history of a massive disc-dominated galaxy
- A new method for age-dating the formation of bars in disc galaxies: The TIMER view on NGC1433's old bar and the inside-out growth of its nuclear disc
- Mira variables in the Milky Way's nuclear stellar disc: discovery and classification
- Composite Bulges -- II. Classical Bulges and Nuclear Discs in Barred Galaxies: The Contrasting Cases of NGC 4608 and NGC 4643
- Mapping radial abundance gradients with Gaia-ESO open clusters: Evidence of recent gas accretion in the Milky Way disk
- The far side of the Galactic bar/bulge revealed through semi-regular variables
- The formation history of our Galaxy's nuclear stellar disc constrained from HST observations of the Quintuplet field
- Bar ages derived for the first time in nearby galaxies: Insights on secular evolution from the TIMER sample
- Disc galaxies are still settling: The discovery of the smallest nuclear discs and their young stellar bars
- A first glimpse at the line-of-sight structure of the Milky Way's nuclear stellar disc
- Differences in star formation activity between tidally triggered and isolated bars: a case study of NGC 4303 and NGC 3627
- Influence of the Galactic bar on the kinematics of the disc stars with Gaia EDR3 data
- Unveiling VVV/WISE Mira variables on the far side of the Galactic disk: Distances, kinematics and a new extinction law
- Bar instability and formation timescale across Toomre's parameter and central mass concentration: slow bar formation or true stability
- The multi-zone chemical evolution of the Galactic bulge: predicting abundances for different radial zones
- Chandra X-ray Measurement of Heavy Element Abundances of Wolf-Rayet Stars in the Galactic Center
- Chemical Evolution in Nuclear Stellar Discs
- The LEGARE Project. I. Chemical evolution model of the Nuclear Stellar Disc in a Bayesian framework
- UVES analysis of red giants in the bulge globular cluster NGC 6522
- Supergiant GCIRS 22 in the Milky Way Nuclear Star Cluster: Revised alpha abundances
- Self-consistent modelling of the Milky Way's Nuclear Stellar Disc
- Age distribution of stars in boxy/peanut/X-shaped bulges formed without bar buckling
- Bar Evolution in Edge-on Galaxies: A Demographic Study of Boxy/Peanut Bulges