Stellar metallicity variations across spiral arms in disk galaxies with multiple populations
arXiv:1801.08711 · doi:10.1051/0004-6361/201732521
Abstract
This letter studies the formation of azimuthal metallicity variations in the disks of spiral galaxies in the absence of initial radial metallicity gradients. Using high-resolution -body simulations, we model composite stellar discs, made of kinematically cold and hot stellar populations, and study their response to spiral arm perturbations. We find that, as expected, disk populations with different kinematics respond differently to a spiral perturbation, with the tendency for dynamically cooler populations to show a larger fractional contribution to spiral arms than dynamically hotter populations. By assuming a relation between kinematics and metallicity, namely the hotter the population, the more metal-poor it is, this differential response to the spiral arm perturbations naturally leads to azimuthal variations in the mean metallicity of stars in the simulated disk. Thus, azimuthal variations in the mean metallicity of stars across a spiral galaxy are not necessarily a consequence of the reshaping, by radial migration, of an initial radial metallicity gradient. They indeed arise naturally also in stellar disks which have initially only a negative vertical metallicity gradient.
5 pages, 6 figures, Accepted for publication in A&A Letters
References in corpus (14)
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- The Geneva-Copenhagen Survey of the Solar neighbourhood II. New uvby calibrations and rediscussion of stellar ages, the G dwarf problem, age-metallicity diagram, and heating mechanisms of the disk
- The APOGEE red-clump catalog: Precise distances, velocities, and high-resolution elemental abundances over a large area of the Milky Way's disk
- Separation of Stellar Populations by an Evolving Bar: Implications for the Bulge of the Milky Way
- The shape of oxygen abundance profiles explored with MUSE: evidence for widespread deviations from single gradients
- Spiral-induced velocity and metallicity patterns in a cosmological zoom simulation of a Milky Way-sized galaxy
- The Chemical Evolution Carousel of Spiral Galaxies: Azimuthal Variations of Oxygen Abundance in NGC1365
- An Iterative Method for Constructing Equilibrium Phase Models of Stellar Systems
- Gas and Stellar Motions and Observational Signatures of Co-Rotating Spiral Arms
- Evidence for azimuthal variations of the oxygen abundance gradient tracing the spiral structure of the galaxy HCG91c
- Spiral and bar driven peculiar velocities in Milky Way sized galaxy simulations
- What the Milky Way bulge reveals about the initial metallicity gradients in the disc
- Role of gas in supporting grand spiral structure
- Asymmetric metallicity patterns in the stellar velocity space with RAVE
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- Chemical Cartography with LAMOST and Gaia Reveal Azimuthal and Spiral Structure in the Galactic Disk
- The chemical signature of the Galactic spiral arms revealed by Gaia DR3
- Timing the Milky Way bar formation and the accompanying radial migration episode
- First metallicity determination from Near-Infrared spectra for five obscured Cepheids discovered in the inner Disk
- Metallicity distributions of halo stars: do they trace the Galactic accretion history?
- ISM metallicity variations across spiral arms in disk galaxies: the impact of local enrichment and gas migration in the presence of radial metallicity gradient
- 2D chemical evolution models II. Effects of multiple spiral arm patterns on O, Eu, Fe and Ba abundance gradients
- Azimuthal variations of oxygen abundance profiles in star-forming regions of disc galaxies in the EAGLE simulations
- The LMC impact on the kinematics of the Milky Way satellites: clues from the running solar apex
- The Non-Axisymmetric Influence: Radius and Angle-Dependent Trends in a Barred Galaxy
- Constraints on the history of Galactic spiral arms revealed by Gaia GSP-Spec alpha-elements
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- Rediscovering the Milky Way with orbit superposition approach and APOGEE data I. Method validation
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- Spatial metallicity variations of mono-temperature stellar populations revealed by early-type stars in LAMOST
- Metal-rich stellar counterpart of the Radcliffe Wave and the 3D chemical footprints of the Milky Way spiral arms
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data III. Panoramic view of the bulge
- Mapping the Milky Way with Gaia Bp/Rp spectra-IV: the broken and asymmetric density profile of the stellar disk traced by a large sample of red clumps
- The large-scale kinematics of young stars in the Milky Way disc: first results from SDSS-V
- Metallicity Structure in Galactic Longitude-Velocity Diagrams of the Milky Way Disk and FIRE-2 Simulations
- The impact of radial migration on disk galaxy star formation histories: II. Role of bar strength, disk thickness, and merger history